# quantum-computing

Published articles for quantum-computing.

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## Practical quantum computers are over a decade away, says NEC

DevFeed: [Practical quantum computers are over a decade away, says NEC](<https://devfeed.tech/articles/practical-quantum-computers-are-over-a-decade-away-says-nec-50539.md>)

Original publisher: [Read original article](<https://www.networkworld.com/article/4223929/practical-quantum-computers-are-over-a-decade-away-says-nec-2.html>)

Author: Maxwell Cooter

Published: 2026-09-18T16:47:16Z

Content type: news

Language: en

Sources: [Network World](<https://devfeed.tech/sources/network-world.md>)

Topics: [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [Computing](<https://devfeed.tech/topics/computing.md>)

Tags: [computers](<https://devfeed.tech/tags/computers.md>), [computing](<https://devfeed.tech/tags/computing.md>), [data-center](<https://devfeed.tech/tags/data-center.md>), [data-center-high-performance-computing](<https://devfeed.tech/tags/data-center-high-performance-computing.md>), [high-performance-computing](<https://devfeed.tech/tags/high-performance-computing.md>), [news](<https://devfeed.tech/tags/news.md>), [news-brief](<https://devfeed.tech/tags/news-brief.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [research](<https://devfeed.tech/tags/research.md>)

### AI overview

NEC reportedly halted plans to develop a practical quantum computer after concluding that commercial use remains more than a decade away and monetization would be difficult. The company will continue researching quantum technology, despite ongoing investment by competitors and governments.

### Source excerpt

A practical, commercial quantum computer is over a decade away, executives at Japanese IT services company NEC are reported as saying. That's why, according to Japanese news publication The Mainichi, company has pulled the plug on its plans to develop a quantum computer -- although it will still continue research into quantum technology. NEC sources told The Mainichi that it would take at least a decade to build a quantum computing that could be put to practical use, and it would be difficult to monetize the technology. This is quite a turnaround for NEC which three years ago was talking about its advances in quantum and its plans to accelerate investment in the technology. The company is certainly bucking the trend as quantum computing is seen as being very much at the cutting edge of research. Pioneers in the field were awarded the Nobel Prize in Physics last year, while companies such as Nvidia and IBM are keen to boost their quantum credentials. Despite its early successes in the quantum field, The Mainichi reports that NEC is lagging its Japanese competitors such as Fujitsu and Hitachi when it comes to the latest advances. There is also the level of investment required. According to The Mainichi, Japan is set to commit just 10 trillion yen ($65.3 billion) to quantum computing by 2040, far lower than the sums invested by the US and China. We're talking about a long game. Quantum technology has been talked about for some time, but we're still a long way from seeing the technology in the mainstream. NEC may not be the only company to decide the cost of investment is not worth it. This article first appeared on CIO.

## Practical quantum computers are over a decade away, says NEC

DevFeed: [Practical quantum computers are over a decade away, says NEC](<https://devfeed.tech/articles/practical-quantum-computers-are-over-a-decade-away-says-nec-50559.md>)

Original publisher: [Read original article](<https://www.cio.com/article/4223927/practical-quantum-computers-are-over-a-decade-away-says-nec.html>)

Author: Maxwell Cooter

Published: 2026-09-18T16:44:54Z

Content type: news

Language: en

Sources: [CIO](<https://devfeed.tech/sources/cio.md>)

Topics: [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [Computing](<https://devfeed.tech/topics/computing.md>)

Tags: [computers](<https://devfeed.tech/tags/computers.md>), [computing](<https://devfeed.tech/tags/computing.md>), [emerging-technology](<https://devfeed.tech/tags/emerging-technology.md>), [emerging-technology-quantum-computing](<https://devfeed.tech/tags/emerging-technology-quantum-computing.md>), [ibm](<https://devfeed.tech/tags/ibm.md>), [news-brief](<https://devfeed.tech/tags/news-brief.md>), [nvidia](<https://devfeed.tech/tags/nvidia.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>)

### AI overview

NEC has reportedly abandoned plans to develop a practical quantum computer, while continuing research into quantum technology. Executives estimate that commercially useful systems remain at least a decade away and may be difficult to monetize.

### Source excerpt

A practical, commercial quantum computer is over a decade away, executives at Japanese IT services company NEC are reported as saying. That's why, according to Japanese news publication The Mainichi, company has pulled the plug on its plans to develop a quantum computer -- although it will still continue research into quantum technology. NEC sources told The Mainichi that it would take at least a decade to build a quantum computing that could be put to practical use, and it would be difficult to monetize the technology. This is quite a turnaround for NEC which three years ago was talking about its advances in quantum and its plans to accelerate investment in the technology. The company is certainly bucking the trend as quantum computing is seen as being very much at the cutting edge of research. Pioneers in the field were awarded the Nobel Prize in Physics last year, while companies such as Nvidia and IBM are keen to boost their quantum credentials. Despite its early successes in the quantum field, The Mainichi reports that NEC is lagging its Japanese competitors such as Fujitsu and Hitachi when it comes to the latest advances. There is also the level of investment required. According to The Mainichi, Japan is set to commit just 10 trillion yen ($65.3 billion) to quantum computing by 2040, far lower than the sums invested by the US and China. We're talking about a long game. Quantum technology has been talked about for some time, but we're still a long way from seeing the technology in the mainstream. NEC may not be the only company to decide the cost of investment is not worth it.

## Piecing Together the Indian Electronics and Semiconductor Ecosystem

DevFeed: [Piecing Together the Indian Electronics and Semiconductor Ecosystem](<https://devfeed.tech/articles/piecing-together-the-indian-electronics-and-semiconductor-ecosystem-50254.md>)

Original publisher: [Read original article](<https://www.eetimes.com/piecing-together-the-indian-electronics-and-semiconductor-ecosystem/>)

Author: Yashasvini Razdan

Published: 2026-09-18T08:00:00Z

Content type: article

Language: en

Sources: [EE Times](<https://devfeed.tech/sources/ee-times.md>)

Topics: [Computing](<https://devfeed.tech/topics/computing.md>), [Chip design](<https://devfeed.tech/topics/chip-design.md>), [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [ibm](<https://devfeed.tech/topics/ibm.md>), [Artificial Intelligence](<https://devfeed.tech/topics/ai.md>)

Tags: [advanced-packaging](<https://devfeed.tech/tags/advanced-packaging.md>), [ai](<https://devfeed.tech/tags/ai.md>), [analog](<https://devfeed.tech/tags/analog.md>), [analysis](<https://devfeed.tech/tags/analysis.md>), [business](<https://devfeed.tech/tags/business.md>), [chip](<https://devfeed.tech/tags/chip.md>), [community](<https://devfeed.tech/tags/community.md>), [computing](<https://devfeed.tech/tags/computing.md>), [designline](<https://devfeed.tech/tags/designline.md>), [digital](<https://devfeed.tech/tags/digital.md>), [education](<https://devfeed.tech/tags/education.md>), [ee-times](<https://devfeed.tech/tags/ee-times.md>), [ee-times-university](<https://devfeed.tech/tags/ee-times-university.md>), [eelife](<https://devfeed.tech/tags/eelife.md>), [eelive-electronic-design](<https://devfeed.tech/tags/eelive-electronic-design.md>), [eet](<https://devfeed.tech/tags/eet.md>), [electrical-engineering](<https://devfeed.tech/tags/electrical-engineering.md>), [electronic-components](<https://devfeed.tech/tags/electronic-components.md>), [electronic-engineering-times](<https://devfeed.tech/tags/electronic-engineering-times.md>), [electronics](<https://devfeed.tech/tags/electronics.md>), [embedded-systems](<https://devfeed.tech/tags/embedded-systems.md>), [fundamentals-courses](<https://devfeed.tech/tags/fundamentals-courses.md>), [ibm](<https://devfeed.tech/tags/ibm.md>), [india](<https://devfeed.tech/tags/india.md>), [learning](<https://devfeed.tech/tags/learning.md>), [mixed-signal](<https://devfeed.tech/tags/mixed-signal.md>), [neuromorphic](<https://devfeed.tech/tags/neuromorphic.md>), [news](<https://devfeed.tech/tags/news.md>), [opinion](<https://devfeed.tech/tags/opinion.md>), [part-search](<https://devfeed.tech/tags/part-search.md>), [product-search](<https://devfeed.tech/tags/product-search.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [semiconductor](<https://devfeed.tech/tags/semiconductor.md>), [semiconductors](<https://devfeed.tech/tags/semiconductors.md>), [software](<https://devfeed.tech/tags/software.md>), [supply-chain](<https://devfeed.tech/tags/supply-chain.md>), [tech-papers](<https://devfeed.tech/tags/tech-papers.md>), [technology](<https://devfeed.tech/tags/technology.md>), [video](<https://devfeed.tech/tags/video.md>)

### AI overview

This special report examines how India's electronics and semiconductor ecosystem is developing through semiconductor packaging facilities, government investment, deep-tech startups, domestic materials and equipment efforts, IBM quantum computing plans, and neuromorphic chip research.

### Source excerpt

India Semiconductor Mission 2.0, quantum computing with IBM, neuromorphic chips, and deep-tech startups: six stories on how India's chip ecosystem is taking shape. The post Piecing Together the Indian Electronics and Semiconductor Ecosystem appeared first on EE Times.

## U.S. Awards Anderon $1B for Quantum Wafer Manufacturing

DevFeed: [U.S. Awards Anderon $1B for Quantum Wafer Manufacturing](<https://devfeed.tech/articles/u-s-awards-anderon-1b-for-quantum-wafer-manufacturing-50259.md>)

Original publisher: [Read original article](<https://www.eetimes.com/u-s-awards-anderon-1b-for-quantum-wafer-manufacturing/>)

Author: Alan Patterson

Published: 2026-09-17T22:00:00Z

Content type: news

Language: en

Sources: [EE Times](<https://devfeed.tech/sources/ee-times.md>)

Topics: [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [ibm](<https://devfeed.tech/topics/ibm.md>), [Computing](<https://devfeed.tech/topics/computing.md>)

Tags: [analog](<https://devfeed.tech/tags/analog.md>), [analysis](<https://devfeed.tech/tags/analysis.md>), [business](<https://devfeed.tech/tags/business.md>), [chip](<https://devfeed.tech/tags/chip.md>), [chip-manufacturing](<https://devfeed.tech/tags/chip-manufacturing.md>), [chips-and-science-act](<https://devfeed.tech/tags/chips-and-science-act.md>), [community](<https://devfeed.tech/tags/community.md>), [computing](<https://devfeed.tech/tags/computing.md>), [designline](<https://devfeed.tech/tags/designline.md>), [digital](<https://devfeed.tech/tags/digital.md>), [education](<https://devfeed.tech/tags/education.md>), [ee-times](<https://devfeed.tech/tags/ee-times.md>), [ee-times-university](<https://devfeed.tech/tags/ee-times-university.md>), [eelife](<https://devfeed.tech/tags/eelife.md>), [eelive-electronic-design](<https://devfeed.tech/tags/eelive-electronic-design.md>), [eet](<https://devfeed.tech/tags/eet.md>), [electrical-engineering](<https://devfeed.tech/tags/electrical-engineering.md>), [electronic-components](<https://devfeed.tech/tags/electronic-components.md>), [electronic-engineering-times](<https://devfeed.tech/tags/electronic-engineering-times.md>), [electronics](<https://devfeed.tech/tags/electronics.md>), [embedded-systems](<https://devfeed.tech/tags/embedded-systems.md>), [fundamentals-courses](<https://devfeed.tech/tags/fundamentals-courses.md>), [ibm](<https://devfeed.tech/tags/ibm.md>), [investment](<https://devfeed.tech/tags/investment.md>), [learning](<https://devfeed.tech/tags/learning.md>), [manufacturing](<https://devfeed.tech/tags/manufacturing.md>), [mixed-signal](<https://devfeed.tech/tags/mixed-signal.md>), [news](<https://devfeed.tech/tags/news.md>), [opinion](<https://devfeed.tech/tags/opinion.md>), [part-search](<https://devfeed.tech/tags/part-search.md>), [product-search](<https://devfeed.tech/tags/product-search.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [semiconductors](<https://devfeed.tech/tags/semiconductors.md>), [software](<https://devfeed.tech/tags/software.md>), [tech-papers](<https://devfeed.tech/tags/tech-papers.md>), [technology](<https://devfeed.tech/tags/technology.md>), [video](<https://devfeed.tech/tags/video.md>), [wafer-manufacturing](<https://devfeed.tech/tags/wafer-manufacturing.md>)

### AI overview

The U.S. Department of Commerce awarded IBM's quantum chip foundry, Anderon, $1 billion under the CHIPS Act to accelerate domestic production of 300-mm quantum wafers. The article examines the shift toward production-scale quantum computing and the specialized manufacturing processes, materials, packaging, metrology, and yield optimization that quantum devices can require.

### Source excerpt

Washington bets $1B on IBM's Anderon to forge quantum wafers on U.S. soil as the race leaves labs behind. The post U.S. Awards Anderon $1B for Quantum Wafer Manufacturing appeared first on EE Times.

## DoE seeking fault-tolerant quantum computer ... by 2028

DevFeed: [DoE seeking fault-tolerant quantum computer ... by 2028](<https://devfeed.tech/articles/doe-seeking-fault-tolerant-quantum-computer-by-2028-42146.md>)

Original publisher: [Read original article](<https://www.theregister.com/hpc/2026/09/17/doe-seeking-fault-tolerant-quantum-computer-by-2028/5297311>)

Author: Brandon Vigliarolo

Published: 2026-09-17T20:09:45Z

Content type: news

Language: en

Sources: [www.theregister.com - Articles](<https://devfeed.tech/sources/www-theregister-com-articles.md>)

Topics: [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [Computing](<https://devfeed.tech/topics/computing.md>)

Tags: [department-of-energy](<https://devfeed.tech/tags/department-of-energy.md>), [hpc](<https://devfeed.tech/tags/hpc.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [qubit](<https://devfeed.tech/tags/qubit.md>)

### AI overview

The document describes a quantum-computing effort in which entrants receive $250,000 upfront to deliver a demonstration within a year.

### Source excerpt

Entrants get $250K upfront to deliver a demo within a year, which sounds totally feasible given quantum computing's track record

## Microsoft puts post-quantum interoperability to a real-world test

DevFeed: [Microsoft puts post-quantum interoperability to a real-world test](<https://devfeed.tech/articles/microsoft-puts-post-quantum-interoperability-to-a-real-world-test-50699.md>)

Original publisher: [Read original article](<https://siliconangle.com/2026/09/17/microsoft-tests-post-quantum-interoperability-digicertworldquantumreadinessday/>)

Author: Victoria Gayton

Published: 2026-09-17T19:16:27Z

Content type: news

Language: en

Sources: [SiliconANGLE](<https://devfeed.tech/sources/siliconangle.md>)

Topics: [Microsoft](<https://devfeed.tech/topics/microsoft.md>), [Post-Quantum](<https://devfeed.tech/topics/post-quantum.md>), [Post-quantum cryptography](<https://devfeed.tech/topics/post-quantum-cryptography.md>), [Testing](<https://devfeed.tech/topics/testing.md>), [interoperability](<https://devfeed.tech/topics/interoperability.md>), [Security](<https://devfeed.tech/topics/security.md>), [migration](<https://devfeed.tech/topics/migration.md>), [protocols](<https://devfeed.tech/topics/protocols.md>), [Deployment](<https://devfeed.tech/topics/deployment.md>)

Tags: [certificate-authorities](<https://devfeed.tech/tags/certificate-authorities.md>), [crypto-agility](<https://devfeed.tech/tags/crypto-agility.md>), [cryptographic-migration](<https://devfeed.tech/tags/cryptographic-migration.md>), [cube-event-coverage](<https://devfeed.tech/tags/cube-event-coverage.md>), [deployment](<https://devfeed.tech/tags/deployment.md>), [digicert](<https://devfeed.tech/tags/digicert.md>), [digicert-s-world-quantum-readiness-day-2026](<https://devfeed.tech/tags/digicert-s-world-quantum-readiness-day-2026.md>), [digicertworldquantumreadinessday](<https://devfeed.tech/tags/digicertworldquantumreadinessday.md>), [karina-sirota-goodley](<https://devfeed.tech/tags/karina-sirota-goodley.md>), [lakshmi-hanspal](<https://devfeed.tech/tags/lakshmi-hanspal.md>), [microsoft](<https://devfeed.tech/tags/microsoft.md>), [microsoft-trusted-root-program](<https://devfeed.tech/tags/microsoft-trusted-root-program.md>), [migration](<https://devfeed.tech/tags/migration.md>), [news](<https://devfeed.tech/tags/news.md>), [post-quantum](<https://devfeed.tech/tags/post-quantum.md>), [post-quantum-cryptography](<https://devfeed.tech/tags/post-quantum-cryptography.md>), [post-quantum-interoperability](<https://devfeed.tech/tags/post-quantum-interoperability.md>), [pqc](<https://devfeed.tech/tags/pqc.md>), [pqc-migration](<https://devfeed.tech/tags/pqc-migration.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [quantum-readiness](<https://devfeed.tech/tags/quantum-readiness.md>), [security](<https://devfeed.tech/tags/security.md>), [standards](<https://devfeed.tech/tags/standards.md>), [testing](<https://devfeed.tech/tags/testing.md>), [thecube](<https://devfeed.tech/tags/thecube.md>), [transport-layer-security](<https://devfeed.tech/tags/transport-layer-security.md>), [world-quantum-readiness-day-2026](<https://devfeed.tech/tags/world-quantum-readiness-day-2026.md>)

### AI overview

Microsoft is testing post-quantum cryptography interoperability with certificate authorities, including DigiCert, through a controlled pilot. The article describes the need to validate compatibility across platforms, protocols, devices, suppliers and existing infrastructure before deployment.

### Source excerpt

Post-quantum interoperability depends on more than whether individual algorithms work. As quantum readiness moves from planning to implementation, testing becomes the bridge between technical standards and deployable protections. Microsoft Corp. is bringing certificate authorities into that process. Readiness must begin with operational needs, according to Karina Sirota Goodley (pictured, right), senior security product manager at [...] The post Microsoft puts post-quantum interoperability to a real-world test appeared first on SiliconANGLE.

## Post-quantum regulations converge on 2030 but split on scope

DevFeed: [Post-quantum regulations converge on 2030 but split on scope](<https://devfeed.tech/articles/post-quantum-regulations-converge-on-2030-but-split-on-scope-50704.md>)

Original publisher: [Read original article](<https://siliconangle.com/2026/09/17/post-quantum-regulations-converge-on-2030-but-split-on-scope-digicertworldquantumreadinessday/>)

Author: Victoria Gayton

Published: 2026-09-17T18:15:25Z

Content type: news

Language: en

Sources: [SiliconANGLE](<https://devfeed.tech/sources/siliconangle.md>)

Topics: [Post-Quantum](<https://devfeed.tech/topics/post-quantum.md>), [migration](<https://devfeed.tech/topics/migration.md>), [Cybersecurity](<https://devfeed.tech/topics/cybersecurity.md>), [Cryptography](<https://devfeed.tech/topics/cryptography.md>), [Requirements](<https://devfeed.tech/topics/requirements.md>), [Risk](<https://devfeed.tech/topics/risk.md>), [roadmaps](<https://devfeed.tech/topics/roadmaps.md>)

Tags: [atea-norge](<https://devfeed.tech/tags/atea-norge.md>), [australia](<https://devfeed.tech/tags/australia.md>), [australian-cyber-security-centre](<https://devfeed.tech/tags/australian-cyber-security-centre.md>), [australian-signals-directorate](<https://devfeed.tech/tags/australian-signals-directorate.md>), [crypto](<https://devfeed.tech/tags/crypto.md>), [crypto-agility](<https://devfeed.tech/tags/crypto-agility.md>), [cryptographic-standards](<https://devfeed.tech/tags/cryptographic-standards.md>), [cube-event-coverage](<https://devfeed.tech/tags/cube-event-coverage.md>), [cybersecurity](<https://devfeed.tech/tags/cybersecurity.md>), [dean-coclin](<https://devfeed.tech/tags/dean-coclin.md>), [digicert](<https://devfeed.tech/tags/digicert.md>), [digicert-s-world-quantum-readiness-day-2026](<https://devfeed.tech/tags/digicert-s-world-quantum-readiness-day-2026.md>), [digicertworldquantumreadinessday](<https://devfeed.tech/tags/digicertworldquantumreadinessday.md>), [encryption](<https://devfeed.tech/tags/encryption.md>), [european-union](<https://devfeed.tech/tags/european-union.md>), [executive-order-14412](<https://devfeed.tech/tags/executive-order-14412.md>), [jostein-stokkan](<https://devfeed.tech/tags/jostein-stokkan.md>), [migration](<https://devfeed.tech/tags/migration.md>), [naomi-wynn](<https://devfeed.tech/tags/naomi-wynn.md>), [national-energy-public-key-infrastructure](<https://devfeed.tech/tags/national-energy-public-key-infrastructure.md>), [news](<https://devfeed.tech/tags/news.md>), [post-quantum](<https://devfeed.tech/tags/post-quantum.md>), [post-quantum-cryptography](<https://devfeed.tech/tags/post-quantum-cryptography.md>), [post-quantum-regulations](<https://devfeed.tech/tags/post-quantum-regulations.md>), [pqc-migration](<https://devfeed.tech/tags/pqc-migration.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [regulatory](<https://devfeed.tech/tags/regulatory.md>), [regulatory-compliance](<https://devfeed.tech/tags/regulatory-compliance.md>), [roadmaps](<https://devfeed.tech/tags/roadmaps.md>), [security](<https://devfeed.tech/tags/security.md>), [thecube](<https://devfeed.tech/tags/thecube.md>), [world-quantum-readiness-day-2026](<https://devfeed.tech/tags/world-quantum-readiness-day-2026.md>)

### AI overview

The article reports that governments are converging on 2030 as a target for post-quantum cryptography migration, but differ in scope and requirements. It compares approaches in Australia, Europe, and the United States and discusses the resulting planning, standards, and implementation challenges for organizations operating across jurisdictions.

### Source excerpt

Post-quantum regulations are turning a distant cybersecurity threat into concrete deadlines. Although governments are clustering around 2030, differences in scope leave multinational organizations facing multiple migration paths. Australia is pursuing complete migration, while Scandinavian and Baltic countries are generally following European Union timelines for roadmaps and high-risk systems, according to Naomi Wynn (pictured, right), chief [...] The post Post-quantum regulations converge on 2030 but split on scope appeared first on SiliconANGLE.

## Quantum readiness moves from blueprint to build as 2029 deadlines converge

DevFeed: [Quantum readiness moves from blueprint to build as 2029 deadlines converge](<https://devfeed.tech/articles/quantum-readiness-moves-from-blueprint-to-build-as-2029-deadlines-converge-50691.md>)

Original publisher: [Read original article](<https://siliconangle.com/2026/09/17/encryption-overhaul-faces-2029-deadline-quantum-readiness-digicertworldquantumreadinessday/>)

Author: Cheryl Knight

Published: 2026-09-17T17:34:43Z

Content type: news

Language: en

Sources: [SiliconANGLE](<https://devfeed.tech/sources/siliconangle.md>)

Topics: [Post-quantum cryptography](<https://devfeed.tech/topics/post-quantum-cryptography.md>), [Security, Privacy and Abuse Prevention](<https://devfeed.tech/topics/security-privacy-and-abuse-prevention.md>), [Cryptography](<https://devfeed.tech/topics/cryptography.md>), [migration](<https://devfeed.tech/topics/migration.md>), [Risk](<https://devfeed.tech/topics/risk.md>), [Computing](<https://devfeed.tech/topics/computing.md>)

Tags: [2026](<https://devfeed.tech/tags/2026.md>), [amit-sinha](<https://devfeed.tech/tags/amit-sinha.md>), [certificate-management](<https://devfeed.tech/tags/certificate-management.md>), [compliance](<https://devfeed.tech/tags/compliance.md>), [crypto-agility](<https://devfeed.tech/tags/crypto-agility.md>), [cryptographic-agility](<https://devfeed.tech/tags/cryptographic-agility.md>), [cryptographic-inventory](<https://devfeed.tech/tags/cryptographic-inventory.md>), [cryptographic-migration](<https://devfeed.tech/tags/cryptographic-migration.md>), [cube-event-coverage](<https://devfeed.tech/tags/cube-event-coverage.md>), [cybersecurity](<https://devfeed.tech/tags/cybersecurity.md>), [data-security](<https://devfeed.tech/tags/data-security.md>), [digicert-inc](<https://devfeed.tech/tags/digicert-inc.md>), [digicert-s-world-quantum-readiness-day-2026](<https://devfeed.tech/tags/digicert-s-world-quantum-readiness-day-2026.md>), [digicert-world-quantum-readiness-day-2026](<https://devfeed.tech/tags/digicert-world-quantum-readiness-day-2026.md>), [digicertworldquantumreadinessday](<https://devfeed.tech/tags/digicertworldquantumreadinessday.md>), [digital-trust](<https://devfeed.tech/tags/digital-trust.md>), [encryption](<https://devfeed.tech/tags/encryption.md>), [enterprise-it](<https://devfeed.tech/tags/enterprise-it.md>), [it-modernization](<https://devfeed.tech/tags/it-modernization.md>), [john-furrier](<https://devfeed.tech/tags/john-furrier.md>), [migration](<https://devfeed.tech/tags/migration.md>), [news](<https://devfeed.tech/tags/news.md>), [pki](<https://devfeed.tech/tags/pki.md>), [post-quantum-cryptography](<https://devfeed.tech/tags/post-quantum-cryptography.md>), [pqc](<https://devfeed.tech/tags/pqc.md>), [public-key-infrastructure](<https://devfeed.tech/tags/public-key-infrastructure.md>), [quantum-central](<https://devfeed.tech/tags/quantum-central.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [quantum-readiness](<https://devfeed.tech/tags/quantum-readiness.md>), [quantum-safe-algorithms](<https://devfeed.tech/tags/quantum-safe-algorithms.md>), [risk-assessment](<https://devfeed.tech/tags/risk-assessment.md>), [security](<https://devfeed.tech/tags/security.md>), [security-standards](<https://devfeed.tech/tags/security-standards.md>), [software](<https://devfeed.tech/tags/software.md>), [thecube](<https://devfeed.tech/tags/thecube.md>), [world-quantum-readiness](<https://devfeed.tech/tags/world-quantum-readiness.md>)

### AI overview

The article reports that enterprises are moving from planning to execution on post-quantum readiness as 2029 deadlines approach. It describes cryptographic asset inventory, prioritization of critical applications, risk assessment, public-key infrastructure, automation, and crypto agility as foundations for the migration.

### Source excerpt

Encryption that has quietly protected the internet for decades is approaching its expiration date. As quantum computing advances, enterprises face a once-in-a-generation rebuild of the cryptography sitting underneath every application, device and certificate they own. That work has shifted from debate to project plan, with organizations moving from planning to execution. Customers have worked through [...] The post Quantum readiness moves from blueprint to build as 2029 deadlines converge appeared first on SiliconANGLE.

## Java 27 Delivers Post-Quantum Cryptography, Future Language Innovation, Helidon 27, JavaFX 27

DevFeed: [Java 27 Delivers Post-Quantum Cryptography, Future Language Innovation, Helidon 27, JavaFX 27](<https://devfeed.tech/articles/java-27-delivers-post-quantum-cryptography-future-language-innovation-helidon-27-javafx-27-30909.md>)

Original publisher: [Read original article](<https://www.infoq.com/news/2026/09/java27-released/>)

Author: Michael Redlich

Published: 2026-09-16T10:00:00Z

Content type: news

Language: en

Sources: [InfoQ](<https://devfeed.tech/sources/infoq.md>)

Topics: [Java](<https://devfeed.tech/topics/java.md>), [java-27](<https://devfeed.tech/topics/java-27.md>), [Post-quantum cryptography](<https://devfeed.tech/topics/post-quantum-cryptography.md>), [Cryptography](<https://devfeed.tech/topics/cryptography.md>), [Security](<https://devfeed.tech/topics/security.md>), [Programming](<https://devfeed.tech/topics/programming.md>), [releases](<https://devfeed.tech/topics/releases.md>)

Tags: [application-security](<https://devfeed.tech/tags/application-security.md>), [architecture-design](<https://devfeed.tech/tags/architecture-design.md>), [cryptography](<https://devfeed.tech/tags/cryptography.md>), [development](<https://devfeed.tech/tags/development.md>), [digital-signature](<https://devfeed.tech/tags/digital-signature.md>), [helidon](<https://devfeed.tech/tags/helidon.md>), [java](<https://devfeed.tech/tags/java.md>), [java-27](<https://devfeed.tech/tags/java-27.md>), [java27-released](<https://devfeed.tech/tags/java27-released.md>), [javafx](<https://devfeed.tech/tags/javafx.md>), [jdk-27](<https://devfeed.tech/tags/jdk-27.md>), [jdk-28](<https://devfeed.tech/tags/jdk-28.md>), [lattice](<https://devfeed.tech/tags/lattice.md>), [module](<https://devfeed.tech/tags/module.md>), [news](<https://devfeed.tech/tags/news.md>), [oracle](<https://devfeed.tech/tags/oracle.md>), [portfolio](<https://devfeed.tech/tags/portfolio.md>), [post-quantum-cryptography](<https://devfeed.tech/tags/post-quantum-cryptography.md>), [preview](<https://devfeed.tech/tags/preview.md>), [project-valhalla](<https://devfeed.tech/tags/project-valhalla.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [release](<https://devfeed.tech/tags/release.md>), [security](<https://devfeed.tech/tags/security.md>), [structured-concurrency](<https://devfeed.tech/tags/structured-concurrency.md>), [vector](<https://devfeed.tech/tags/vector.md>)

### AI overview

Oracle released Java 27, the second non-LTS release since JDK 25. Its final feature set contains nine JEPs, including post-quantum hybrid key exchange for TLS 1.3, structured concurrency, compact object headers, JFR data redaction, the Vector API, and PEM encodings for cryptographic objects. Five features remain in preview or incubator stages.

### Source excerpt

Oracle has released version 27 of the Java programming language and virtual machine. As the second non-LTS release since JDK 25, the final feature set includes nine JEPs, five of which are still progressing through the preview and incubator stages. This release focuses on strengthening security, future language innovation, and projects under the auspices of the Java Verified Portfolio. By Michael Redlich

## From error mitigation to fault-tolerant quantum computing

DevFeed: [From error mitigation to fault-tolerant quantum computing](<https://devfeed.tech/articles/from-error-mitigation-to-fault-tolerant-quantum-computing-26800.md>)

Original publisher: [Read original article](<https://research.ibm.com/blog/qec-continuum>)

Published: 2026-09-15T14:30:00Z

Content type: article

Language: en

Sources: [IBM Research](<https://devfeed.tech/sources/ibm-research.md>)

Topics: [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [Hardware](<https://devfeed.tech/topics/hardware.md>), [ibm](<https://devfeed.tech/topics/ibm.md>)

Tags: [compilation](<https://devfeed.tech/tags/compilation.md>), [deep-dive](<https://devfeed.tech/tags/deep-dive.md>), [errors](<https://devfeed.tech/tags/errors.md>), [hardware](<https://devfeed.tech/tags/hardware.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [quantum-error-correction-mitigation](<https://devfeed.tech/tags/quantum-error-correction-mitigation.md>), [quantum-software](<https://devfeed.tech/tags/quantum-software.md>), [real-time](<https://devfeed.tech/tags/real-time.md>), [reduce](<https://devfeed.tech/tags/reduce.md>), [resource](<https://devfeed.tech/tags/resource.md>)

### AI overview

The article describes a continuum from quantum error mitigation to quantum error correction as a path toward useful quantum computing. It reports emerging techniques with lower effective error rates, reduced sampling overhead, and lower resource requirements than conventional approaches.

### Source excerpt

A spectrum of error-correcting techniques is enabling useful quantum computation, measured not by logical qubits but by the circuits you can run with them.

## IBM Quantum System Two Heads to Switzerland: 120-Qubit Nighthawk r2 at CSCS by End of 2026

DevFeed: [IBM Quantum System Two Heads to Switzerland: 120-Qubit Nighthawk r2 at CSCS by End of 2026](<https://devfeed.tech/articles/ibm-quantum-system-two-heads-to-switzerland-120-qubit-nighthawk-r2-at-cscs-by-end-of-2026-12365.md>)

Original publisher: [Read original article](<https://www.storagereview.com/news/ibm-quantum-system-two-heads-to-switzerland-120-qubit-nighthawk-r2-at-cscs-by-end-of-2026>)

Author: Harold Fritts

Published: 2026-09-11T16:25:47Z

Content type: news

Language: en

Sources: [StorageReview.com](<https://devfeed.tech/sources/storagereview-com.md>)

Topics: [ibm](<https://devfeed.tech/topics/ibm.md>), [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [Supercomputing](<https://devfeed.tech/topics/supercomputing.md>), [Cloud](<https://devfeed.tech/topics/cloud.md>), [Algorithms](<https://devfeed.tech/topics/algorithms.md>), [Optimization](<https://devfeed.tech/topics/optimization.md>), [Simulation and Design](<https://devfeed.tech/topics/simulation-and-design.md>), [Hardware](<https://devfeed.tech/topics/hardware.md>)

Tags: [2026](<https://devfeed.tech/tags/2026.md>), [ai](<https://devfeed.tech/tags/ai.md>), [algorithms](<https://devfeed.tech/tags/algorithms.md>), [amd](<https://devfeed.tech/tags/amd.md>), [chemistry](<https://devfeed.tech/tags/chemistry.md>), [cloud](<https://devfeed.tech/tags/cloud.md>), [collaboration](<https://devfeed.tech/tags/collaboration.md>), [core](<https://devfeed.tech/tags/core.md>), [enterprise](<https://devfeed.tech/tags/enterprise.md>), [financial-services](<https://devfeed.tech/tags/financial-services.md>), [hardware](<https://devfeed.tech/tags/hardware.md>), [hub](<https://devfeed.tech/tags/hub.md>), [ibm](<https://devfeed.tech/tags/ibm.md>), [infrastructure](<https://devfeed.tech/tags/infrastructure.md>), [manufacturing](<https://devfeed.tech/tags/manufacturing.md>), [optimization](<https://devfeed.tech/tags/optimization.md>), [processors](<https://devfeed.tech/tags/processors.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [science](<https://devfeed.tech/tags/science.md>), [simulation](<https://devfeed.tech/tags/simulation.md>), [supercomputing](<https://devfeed.tech/tags/supercomputing.md>)

### AI overview

IBM and Lockheed Martin are establishing a quantum innovation hub at ETH Zurich, centered on an IBM Quantum System Two planned for installation at the Swiss National Supercomputing Centre by the end of 2026. The system will use IBM's 120-qubit Nighthawk r2 processor and support research in areas including chemistry, materials science, optimization, and financial services.

### Source excerpt

IBM and Lockheed Martin are setting up a quantum innovation hub at ETH Zurich, and its core is Switzerland's first IBM Quantum System Two, to be installed at the Swiss National Supercomputing Centre (CSCS) in Lugano by the end of 2026. The hub comes out of an offset agreement with armasuisse, Switzerland's Federal Office for The post IBM Quantum System Two Heads to Switzerland: 120-Qubit Nighthawk r2 at CSCS by End of 2026 appeared first on StorageReview.com.

## Switzerland's first IBM Quantum System Two

DevFeed: [Switzerland's first IBM Quantum System Two](<https://devfeed.tech/articles/switzerland-s-first-ibm-quantum-system-two-17351.md>)

Original publisher: [Read original article](<https://research.ibm.com/blog/swiss-innovation-hub>)

Published: 2026-09-10T07:00:00Z

Content type: article

Language: en

Sources: [IBM Research](<https://devfeed.tech/sources/ibm-research.md>)

Topics: [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [ibm](<https://devfeed.tech/topics/ibm.md>), [Supercomputing](<https://devfeed.tech/topics/supercomputing.md>)

Tags: [2026](<https://devfeed.tech/tags/2026.md>), [collaboration](<https://devfeed.tech/tags/collaboration.md>), [development](<https://devfeed.tech/tags/development.md>), [hub](<https://devfeed.tech/tags/hub.md>), [ibm](<https://devfeed.tech/tags/ibm.md>), [industry](<https://devfeed.tech/tags/industry.md>), [innovation](<https://devfeed.tech/tags/innovation.md>), [news](<https://devfeed.tech/tags/news.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-community](<https://devfeed.tech/tags/quantum-community.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [quantum-network](<https://devfeed.tech/tags/quantum-network.md>), [quantum-systems](<https://devfeed.tech/tags/quantum-systems.md>), [research](<https://devfeed.tech/tags/research.md>), [science](<https://devfeed.tech/tags/science.md>), [switzerland](<https://devfeed.tech/tags/switzerland.md>), [technology](<https://devfeed.tech/tags/technology.md>), [with](<https://devfeed.tech/tags/with.md>)

### AI overview

IBM and Lockheed Martin are launching a quantum innovation hub at ETH Zurich, anchored by Switzerland's first IBM Quantum System Two. Expected to be operational by the end of 2026 at the Swiss National Supercomputing Centre in Lugano, it will expand quantum computing access for Swiss universities, startups, companies, and researchers.

### Source excerpt

Lockheed Martin and IBM are launching a Swiss quantum innovation hub at ETH Zurich to advance research, industry collaboration, and workforce development.

## How GPT-5.6 Sol helps run quantum computing experiments

DevFeed: [How GPT-5.6 Sol helps run quantum computing experiments](<https://devfeed.tech/articles/how-gpt-5-6-sol-helps-run-quantum-computing-experiments-6352.md>)

Original publisher: [Read original article](<https://openai.com/index/codex-quantum-computing-experiments>)

Published: 2026-09-08T17:00:00Z

Content type: article

Language: en

Sources: [OpenAI News](<https://devfeed.tech/sources/openai-news.md>)

Topics: [AI research agents](<https://devfeed.tech/topics/ai-research-agents.md>)

Tags: [agents](<https://devfeed.tech/tags/agents.md>), [ai](<https://devfeed.tech/tags/ai.md>), [ai-agents](<https://devfeed.tech/tags/ai-agents.md>), [analysis](<https://devfeed.tech/tags/analysis.md>), [applied-ai](<https://devfeed.tech/tags/applied-ai.md>), [codex](<https://devfeed.tech/tags/codex.md>), [experiments](<https://devfeed.tech/tags/experiments.md>), [gpt](<https://devfeed.tech/tags/gpt.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>)

### AI overview

An MIT researcher connected GPT-5.6 Sol through Codex to laboratory software for superconducting-qubit experiments. The system ran routine measurements, analyzed results, and selected next steps, reducing the need for constant supervision during calibration workflows.

### Source excerpt

See how an MIT researcher uses GPT-5.6 Sol with Codex to autonomously run quantum computing experiments, analyze results, and calibrate qubits.

## Crypto Agility: Why PQC Is Not a One-Time Upgrade

DevFeed: [Crypto Agility: Why PQC Is Not a One-Time Upgrade](<https://devfeed.tech/articles/crypto-agility-why-pqc-is-not-a-one-time-upgrade-8419.md>)

Original publisher: [Read original article](<https://blogs.cisco.com/security/crypto-agility-why-pqc-is-not-a-one-time-upgrade/>)

Author: Hugo Vliegen

Published: 2026-09-03T15:00:56Z

Content type: article

Language: en

Sources: [Security @ Cisco Blogs](<https://devfeed.tech/sources/security-cisco-blogs.md>)

Topics: [Cryptography](<https://devfeed.tech/topics/cryptography.md>), [networking](<https://devfeed.tech/topics/networking.md>), [Network design](<https://devfeed.tech/topics/network-design.md>), [Vulnerabilities](<https://devfeed.tech/topics/vulnerabilities.md>)

Tags: [cisco-sd-wan](<https://devfeed.tech/tags/cisco-sd-wan.md>), [cryptographic](<https://devfeed.tech/tags/cryptographic.md>), [cryptography](<https://devfeed.tech/tags/cryptography.md>), [infrastructure](<https://devfeed.tech/tags/infrastructure.md>), [network-security](<https://devfeed.tech/tags/network-security.md>), [networks](<https://devfeed.tech/tags/networks.md>), [post-quantum](<https://devfeed.tech/tags/post-quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [sd-wan-security](<https://devfeed.tech/tags/sd-wan-security.md>), [security](<https://devfeed.tech/tags/security.md>), [security-for-ai](<https://devfeed.tech/tags/security-for-ai.md>)

### AI overview

The article explains why crypto agility is essential for long-lived network infrastructure adopting post-quantum cryptography. It argues that organizations should design systems to update cryptography continuously as standards, threats, and implementations evolve.

### Source excerpt

Learn why crypto agility is essential for PQC-ready networks--and how adaptable infrastructure helps organizations keep pace with evolving threats.

## From MIT to IBM, expediting AI and quantum deployment

DevFeed: [From MIT to IBM, expediting AI and quantum deployment](<https://devfeed.tech/articles/from-mit-to-ibm-expediting-ai-and-quantum-deployment-37952.md>)

Original publisher: [Read original article](<https://news.mit.edu/2026/from-mit-to-ibm-expediting-ai-and-quantum-deployment-0902>)

Author: Lauren Hinkel | MIT-IBM Computing Research Lab

Published: 2026-09-02T20:25:00Z

Content type: news

Language: en

Sources: [MIT AI News](<https://devfeed.tech/sources/mit-ai-news.md>)

Topics: [Artificial Intelligence](<https://devfeed.tech/topics/ai.md>), [ibm](<https://devfeed.tech/topics/ibm.md>), [Reinforcement learning](<https://devfeed.tech/topics/reinforcement-learning.md>), [Computing](<https://devfeed.tech/topics/computing.md>), [LLMs](<https://devfeed.tech/topics/llms.md>)

Tags: [academic](<https://devfeed.tech/tags/academic.md>), [ai](<https://devfeed.tech/tags/ai.md>), [ai-agents](<https://devfeed.tech/tags/ai-agents.md>), [algorithms](<https://devfeed.tech/tags/algorithms.md>), [alumni-ae](<https://devfeed.tech/tags/alumni-ae.md>), [aram-harrow](<https://devfeed.tech/tags/aram-harrow.md>), [artificial-intelligence](<https://devfeed.tech/tags/artificial-intelligence.md>), [atari-games](<https://devfeed.tech/tags/atari-games.md>), [careers](<https://devfeed.tech/tags/careers.md>), [collaboration](<https://devfeed.tech/tags/collaboration.md>), [computer-science-and-artificial-intelligence-laboratory-csail](<https://devfeed.tech/tags/computer-science-and-artificial-intelligence-laboratory-csail.md>), [computer-science-and-technology](<https://devfeed.tech/tags/computer-science-and-technology.md>), [computing](<https://devfeed.tech/tags/computing.md>), [data](<https://devfeed.tech/tags/data.md>), [electrical-engineering-and-computer-science-eecs](<https://devfeed.tech/tags/electrical-engineering-and-computer-science-eecs.md>), [fair-ai](<https://devfeed.tech/tags/fair-ai.md>), [graduate-postdoctoral](<https://devfeed.tech/tags/graduate-postdoctoral.md>), [graduate-students](<https://devfeed.tech/tags/graduate-students.md>), [ibm](<https://devfeed.tech/tags/ibm.md>), [industry](<https://devfeed.tech/tags/industry.md>), [irene-ko](<https://devfeed.tech/tags/irene-ko.md>), [isaac-chuang](<https://devfeed.tech/tags/isaac-chuang.md>), [language-models](<https://devfeed.tech/tags/language-models.md>), [learning](<https://devfeed.tech/tags/learning.md>), [luca-daniel](<https://devfeed.tech/tags/luca-daniel.md>), [machine-learning](<https://devfeed.tech/tags/machine-learning.md>), [mit-ibm-computing-research-lab](<https://devfeed.tech/tags/mit-ibm-computing-research-lab.md>), [mit-ibm-watson-ai-lab](<https://devfeed.tech/tags/mit-ibm-watson-ai-lab.md>), [mit-schwarzman-college-of-computing](<https://devfeed.tech/tags/mit-schwarzman-college-of-computing.md>), [pulkit-agrawal](<https://devfeed.tech/tags/pulkit-agrawal.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [quantum-machine-learning](<https://devfeed.tech/tags/quantum-machine-learning.md>), [research](<https://devfeed.tech/tags/research.md>), [school-of-engineering](<https://devfeed.tech/tags/school-of-engineering.md>), [srinivasan-arunachalam](<https://devfeed.tech/tags/srinivasan-arunachalam.md>), [trustworthy-ai](<https://devfeed.tech/tags/trustworthy-ai.md>), [vllm-hook](<https://devfeed.tech/tags/vllm-hook.md>), [zhang-wei-hong](<https://devfeed.tech/tags/zhang-wei-hong.md>)

### AI overview

MIT graduate students and a former postdoc who moved to IBM describe how work with the MIT-IBM Computing Research Lab helped translate rigorous research into industry applications. Their areas include quantum machine learning, reinforcement learning, AI agents, and trustworthy and fair AI.

### Source excerpt

MIT affiliates engage with the MIT-IBM Computing Research Lab to bring rigorous theory to production systems.

## IBM Quantum Nighthawk r2--more circuits, faster

DevFeed: [IBM Quantum Nighthawk r2--more circuits, faster](<https://devfeed.tech/articles/ibm-quantum-nighthawk-r2-more-circuits-faster-17343.md>)

Original publisher: [Read original article](<https://research.ibm.com/blog/nighthawk-r2>)

Published: 2026-08-31T14:30:00Z

Content type: article

Language: en

Sources: [IBM Research](<https://devfeed.tech/sources/ibm-research.md>)

Topics: [ibm](<https://devfeed.tech/topics/ibm.md>), [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [Hardware](<https://devfeed.tech/topics/hardware.md>)

Tags: [hardware](<https://devfeed.tech/tags/hardware.md>), [ibm](<https://devfeed.tech/tags/ibm.md>), [performance](<https://devfeed.tech/tags/performance.md>), [processor](<https://devfeed.tech/tags/processor.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [quantum-error-correction-mitigation](<https://devfeed.tech/tags/quantum-error-correction-mitigation.md>), [quantum-systems](<https://devfeed.tech/tags/quantum-systems.md>), [release](<https://devfeed.tech/tags/release.md>), [speed](<https://devfeed.tech/tags/speed.md>)

### AI overview

IBM Quantum Nighthawk r2 uses independent high-speed qubit reset to execute more than 100,000 circuits per second, providing up to 25 times the circuit throughput of IBM Quantum Heron. The 120-qubit processor also supports accurate results on circuits with more than 7,500 gates.

### Source excerpt

High-speed, independent qubit reset boosts circuit throughput 25x over Heron while enabling accurate observable estimation on circuits with 7,500+ gates.

## Why a cryptographic inventory is key for addressing the quantum computing threat

DevFeed: [Why a cryptographic inventory is key for addressing the quantum computing threat](<https://devfeed.tech/articles/why-a-cryptographic-inventory-is-key-for-addressing-the-quantum-computing-threat-8275.md>)

Original publisher: [Read original article](<https://www.tenable.com/blog/why-a-cryptographic-inventory-is-key-for-addressing-the-quantum-computing-threat>)

Author: Christopher Day

Published: 2026-08-28T14:01:00Z

Content type: article

Language: en

Sources: [Tenable Blog](<https://devfeed.tech/sources/tenable-blog.md>)

Topics: [Cryptography](<https://devfeed.tech/topics/cryptography.md>), [Security, Privacy and Abuse Prevention](<https://devfeed.tech/topics/security-privacy-and-abuse-prevention.md>), [migration](<https://devfeed.tech/topics/migration.md>), [Security Attacks](<https://devfeed.tech/topics/security-attacks.md>)

Tags: [algorithms](<https://devfeed.tech/tags/algorithms.md>), [attacks](<https://devfeed.tech/tags/attacks.md>), [cryptographic](<https://devfeed.tech/tags/cryptographic.md>), [cryptography](<https://devfeed.tech/tags/cryptography.md>), [encryption](<https://devfeed.tech/tags/encryption.md>), [migration](<https://devfeed.tech/tags/migration.md>), [post-quantum](<https://devfeed.tech/tags/post-quantum.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [security](<https://devfeed.tech/tags/security.md>)

### AI overview

The article explains how a cryptographic inventory and phased migration to quantum-resistant cryptography can address the risk that future quantum computers pose to public-key algorithms. It highlights harvest-now, decrypt-later attacks, the vulnerability of RSA, ECC, and Diffie-Hellman to Shor's Algorithm, and the expected resilience of AES-256.

### Source excerpt

When quantum computers become generally available, they'll be able to crack current public-key cryptographic algorithms, putting digitally stored and transmitted data at risk. But the threat already exists, as attackers use the "harvest now, decrypt later" tactic. Discover why building a comprehensive cryptographic inventory and executing a phased operational strategy are critical for protecting your data against quantum computing attacks. Key takeaways Quantum computing risks are an operational threat today due to "harvest now, decrypt later" (HNDL) tactics, in which adversaries actively harvest and store encrypted data to decrypt it retroactively once quantum capabilities mature. When run on a quantum computer that's powerful enough, Shor's Algorithm will break foundational asymmetric infrastructure like the RSA, ECC, and Diffie-Hellman algorithms, although symmetric encryption standards like AES-256 are expected to remain secure against quantum attacks. Globally, more regulatory bodies are starting to mandate a comprehensive cryptographic inventory, making absolute visibility across the digital environment a prerequisite for an orderly post-quantum migration. Transitioning to quantum-resistant cryptography requires a phased operational strategy spanning discovery, prioritization, remediation, and verification. The quantum threat to modern security architecture Future quantum computers will represent a threat to the foundational security architecture that protects digital data. For decades, the global economy, national security apparatus, and critical infrastructure have relied on asymmetric cryptography, specifically RSA and elliptic curve cryptography (ECC), to secure data in transit, authenticate identities, and protect digital signatures. The mathematical difficulty of factoring large integers or solving discrete logarithm problems has long provided a robust shield against cyber attacks launched using conventional computing capabilities. However, the rapid mat

## Qiskit Fermions: a modular toolbox for fermionic systems

DevFeed: [Qiskit Fermions: a modular toolbox for fermionic systems](<https://devfeed.tech/articles/qiskit-fermions-a-modular-toolbox-for-fermionic-systems-17346.md>)

Original publisher: [Read original article](<https://research.ibm.com/blog/qiskit-fermions>)

Published: 2026-08-24T14:30:00Z

Content type: release

Language: en

Sources: [IBM Research](<https://devfeed.tech/sources/ibm-research.md>)

Topics: [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [Software](<https://devfeed.tech/topics/software.md>), [Simulation](<https://devfeed.tech/topics/simulation.md>), [Open Source](<https://devfeed.tech/topics/open-source.md>)

Tags: [open-source](<https://devfeed.tech/tags/open-source.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [quantum-enablement](<https://devfeed.tech/tags/quantum-enablement.md>), [quantum-research](<https://devfeed.tech/tags/quantum-research.md>), [quantum-software](<https://devfeed.tech/tags/quantum-software.md>), [release](<https://devfeed.tech/tags/release.md>), [simulation](<https://devfeed.tech/tags/simulation.md>), [software](<https://devfeed.tech/tags/software.md>)

### AI overview

IBM introduces Qiskit Fermions, an open-source modular toolbox for expressing fermionic operators and circuits, defining fermion-to-qubit mappings, and compiling fermionic workflows into quantum circuits. The package preserves fermionic structure until transpilation and supports quantum simulation workflows in areas including quantum chemistry, condensed-matter physics, and materials science.

### Source excerpt

A new research tool for expressing fermionic operators, circuits, and mappings--and for building efficient fermionic algorithms.

## Quantum-Augmented Applications: Integrating Quantum Subroutines into Classical Software Stacks

DevFeed: [Quantum-Augmented Applications: Integrating Quantum Subroutines into Classical Software Stacks](<https://devfeed.tech/articles/quantum-augmented-applications-integrating-quantum-subroutines-into-classical-software-stacks-2209.md>)

Original publisher: [Read original article](<https://stackoverflow.blog/2026/08/20/quantum-augmented-applications-integrating-quantum-subroutines-into-classical-software-stacks/>)

Author: Dr. Ahmad Mateen Ishanzai

Published: 2026-08-20T18:43:39Z

Content type: article

Language: en

Sources: [Stack Overflow Blog](<https://devfeed.tech/sources/stack-overflow-blog.md>)

Topics: [Software](<https://devfeed.tech/topics/software.md>), [Optimization](<https://devfeed.tech/topics/optimization.md>), [Hardware](<https://devfeed.tech/topics/hardware.md>), [coding](<https://devfeed.tech/topics/coding.md>), [Network](<https://devfeed.tech/topics/network.md>)

Tags: [buiilding-software](<https://devfeed.tech/tags/buiilding-software.md>), [cc-by-sa](<https://devfeed.tech/tags/cc-by-sa.md>), [combinatorial-optimization](<https://devfeed.tech/tags/combinatorial-optimization.md>), [contributed](<https://devfeed.tech/tags/contributed.md>), [high-performance-computing](<https://devfeed.tech/tags/high-performance-computing.md>), [latency](<https://devfeed.tech/tags/latency.md>), [low-latency](<https://devfeed.tech/tags/low-latency.md>), [optimization](<https://devfeed.tech/tags/optimization.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>)

### AI overview

This article presents quantum-augmented applications as hybrid systems that integrate Quantum Processing Units with classical software pipelines. It describes delegating targeted computationally difficult subroutines to QPUs while retaining classical business logic, data preprocessing, orchestration, and optimization, and discusses practical constraints including noise, transpilation latency, and network overhead.

### Source excerpt

Founded in 2008, Stack Overflow's public platform is used by nearly everyone who codes to learn, share their knowledge, collaborate, and build their careers.

## IBM's new modular architecture for cryogenic systems

DevFeed: [IBM's new modular architecture for cryogenic systems](<https://devfeed.tech/articles/ibm-s-new-modular-architecture-for-cryogenic-systems-17341.md>)

Original publisher: [Read original article](<https://research.ibm.com/blog/modular-cryogenics>)

Published: 2026-08-19T10:00:00Z

Content type: article

Language: en

Sources: [IBM Research](<https://devfeed.tech/sources/ibm-research.md>)

Topics: [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [Hardware](<https://devfeed.tech/topics/hardware.md>), [Architecture & Design](<https://devfeed.tech/topics/architecture-design.md>), [ibm](<https://devfeed.tech/topics/ibm.md>)

Tags: [architecture](<https://devfeed.tech/tags/architecture.md>), [hardware](<https://devfeed.tech/tags/hardware.md>), [ibm](<https://devfeed.tech/tags/ibm.md>), [news](<https://devfeed.tech/tags/news.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [quantum-systems](<https://devfeed.tech/tags/quantum-systems.md>)

### AI overview

IBM describes a modular cryogenic architecture for connecting quantum processors through quantum and classical links. The design is intended to improve scalability, reliability, upgradeability, and support for future multi-chip, fault-tolerant quantum systems.

### Source excerpt

Modular approach to housing and cooling quantum processors clears a path for interconnected, fault-tolerant systems.

## QOBLIB: tracking progress in quantum optimization

DevFeed: [QOBLIB: tracking progress in quantum optimization](<https://devfeed.tech/articles/qoblib-tracking-progress-in-quantum-optimization-17347.md>)

Original publisher: [Read original article](<https://research.ibm.com/blog/qoblib>)

Published: 2026-08-12T13:00:00Z

Content type: article

Language: en

Sources: [IBM Research](<https://devfeed.tech/sources/ibm-research.md>)

Topics: [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [benchmarking](<https://devfeed.tech/topics/benchmarking.md>), [Optimization](<https://devfeed.tech/topics/optimization.md>), [Framework](<https://devfeed.tech/topics/framework.md>), [Website](<https://devfeed.tech/topics/website.md>)

Tags: [benchmarking](<https://devfeed.tech/tags/benchmarking.md>), [benchmarks](<https://devfeed.tech/tags/benchmarks.md>), [community](<https://devfeed.tech/tags/community.md>), [framework](<https://devfeed.tech/tags/framework.md>), [news](<https://devfeed.tech/tags/news.md>), [optimization](<https://devfeed.tech/tags/optimization.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-algorithms](<https://devfeed.tech/tags/quantum-algorithms.md>), [quantum-community](<https://devfeed.tech/tags/quantum-community.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [research](<https://devfeed.tech/tags/research.md>), [science](<https://devfeed.tech/tags/science.md>)

### AI overview

IBM describes updates to the Quantum Optimization Benchmarking Library (QOBLIB), including a Nature Computational Science publication, a new website, and more than 2,000 submitted results. The initiative provides an open, community-driven framework for comparing quantum optimization benchmarks and assessing progress toward practical quantum advantage.

### Source excerpt

Quantum advantage is here. The next question is where to apply it. New updates from the Quantum Optimization Working Group offer a glimpse at the path ahead.

## Quantum advantage through trusted quantum computation

DevFeed: [Quantum advantage through trusted quantum computation](<https://devfeed.tech/articles/quantum-advantage-through-trusted-quantum-computation-17348.md>)

Original publisher: [Read original article](<https://research.ibm.com/blog/quantum-advantage>)

Published: 2026-07-30T10:00:00Z

Content type: article

Language: en

Sources: [IBM Research](<https://devfeed.tech/sources/ibm-research.md>)

Topics: [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [Simulation](<https://devfeed.tech/topics/simulation.md>), [Benchmark](<https://devfeed.tech/topics/benchmark.md>)

Tags: [news](<https://devfeed.tech/tags/news.md>), [process](<https://devfeed.tech/tags/process.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-algorithms](<https://devfeed.tech/tags/quantum-algorithms.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [quantum-error-correction-mitigation](<https://devfeed.tech/tags/quantum-error-correction-mitigation.md>), [quantum-research](<https://devfeed.tech/tags/quantum-research.md>), [reporting](<https://devfeed.tech/tags/reporting.md>), [science](<https://devfeed.tech/tags/science.md>), [techniques](<https://devfeed.tech/tags/techniques.md>), [the-result](<https://devfeed.tech/tags/the-result.md>), [validation](<https://devfeed.tech/tags/validation.md>), [verification](<https://devfeed.tech/tags/verification.md>)

### AI overview

IBM reports three papers demonstrating quantum advantage with built-in validation, including validated error-mitigation techniques and methods for certifying classically hard quantum computations. The article explains how these approaches aim to establish trustworthy results when exact classical verification is unavailable.

### Source excerpt

Demonstration shows trusted quantum computation in regimes where classical methods fail.

## NVIDIA Ising Enables Fully Automated Quantum Computer Calibration with Enhanced In-Context Learning

DevFeed: [NVIDIA Ising Enables Fully Automated Quantum Computer Calibration with Enhanced In-Context Learning](<https://devfeed.tech/articles/nvidia-ising-enables-fully-automated-quantum-computer-calibration-with-enhanced-in-context-learning-6895.md>)

Original publisher: [Read original article](<https://developer.nvidia.com/blog/nvidia-ising-enables-fully-automated-quantum-computer-calibration-with-enhanced-in-context-learning/>)

Author: Tanya Lenz

Published: 2026-07-27T16:00:00Z

Content type: article

Language: en

Sources: [NVIDIA Developer](<https://devfeed.tech/sources/nvidia-developer.md>), [NVIDIA Technical Blog](<https://devfeed.tech/sources/nvidia-technical-blog.md>)

Topics: [Ising](<https://devfeed.tech/topics/ising.md>), [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [vlm](<https://devfeed.tech/topics/vlm.md>), [Nvidia](<https://devfeed.tech/topics/nvidia.md>), [Open Source](<https://devfeed.tech/topics/open-source.md>), [Benchmark](<https://devfeed.tech/topics/benchmark.md>), [benchmarking](<https://devfeed.tech/topics/benchmarking.md>), [NVFP4](<https://devfeed.tech/topics/nvfp4.md>), [DGX Spark](<https://devfeed.tech/topics/dgx-spark.md>)

Tags: [agentic-ai-generative-ai](<https://devfeed.tech/tags/agentic-ai-generative-ai.md>), [ai-agent](<https://devfeed.tech/tags/ai-agent.md>), [benchmark](<https://devfeed.tech/tags/benchmark.md>), [benchmarking](<https://devfeed.tech/tags/benchmarking.md>), [data-science](<https://devfeed.tech/tags/data-science.md>), [dgx-spark](<https://devfeed.tech/tags/dgx-spark.md>), [featured](<https://devfeed.tech/tags/featured.md>), [ising](<https://devfeed.tech/tags/ising.md>), [nvfp4](<https://devfeed.tech/tags/nvfp4.md>), [nvidia](<https://devfeed.tech/tags/nvidia.md>), [open-source](<https://devfeed.tech/tags/open-source.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [simulation-modeling-design](<https://devfeed.tech/tags/simulation-modeling-design.md>), [training-ai-models](<https://devfeed.tech/tags/training-ai-models.md>), [vlm](<https://devfeed.tech/tags/vlm.md>), [vlms](<https://devfeed.tech/tags/vlms.md>)

### AI overview

NVIDIA Ising Calibration 1.5 is an open-source vision-language model for interpreting quantum-processor diagnostics and recommending calibration actions. The article highlights zero-shot and in-context learning evaluation on QCalEval, plus an NVFP4-quantized version for local deployment.

### Source excerpt

NVIDIA Ising Calibration is an open source vision language model (VLM) designed to interpret diagnostic outputs from quantum processors and determine how they...

## MIT projects selected for funding under US Department of Energy's Genesis Mission

DevFeed: [MIT projects selected for funding under US Department of Energy's Genesis Mission](<https://devfeed.tech/articles/mit-projects-selected-for-funding-under-us-department-of-energy-s-genesis-mission-37969.md>)

Original publisher: [Read original article](<https://news.mit.edu/2026/mit-projects-selected-funding-under-doe-genesis-mission-0723>)

Author: Office of the Vice President for Research

Published: 2026-07-23T12:00:00Z

Content type: news

Language: en

Sources: [MIT AI News](<https://devfeed.tech/sources/mit-ai-news.md>)

Topics: [Artificial Intelligence](<https://devfeed.tech/topics/ai.md>), [Supercomputing](<https://devfeed.tech/topics/supercomputing.md>), [systems](<https://devfeed.tech/topics/systems.md>)

Tags: [administration](<https://devfeed.tech/tags/administration.md>), [ai](<https://devfeed.tech/tags/ai.md>), [artificial-intelligence](<https://devfeed.tech/tags/artificial-intelligence.md>), [center-for-computational-science-and-engineering](<https://devfeed.tech/tags/center-for-computational-science-and-engineering.md>), [chemical-engineering](<https://devfeed.tech/tags/chemical-engineering.md>), [department-of-energy](<https://devfeed.tech/tags/department-of-energy.md>), [department-of-energy-doe](<https://devfeed.tech/tags/department-of-energy-doe.md>), [doe](<https://devfeed.tech/tags/doe.md>), [eaps](<https://devfeed.tech/tags/eaps.md>), [engineering](<https://devfeed.tech/tags/engineering.md>), [faculty](<https://devfeed.tech/tags/faculty.md>), [funding](<https://devfeed.tech/tags/funding.md>), [genesis](<https://devfeed.tech/tags/genesis.md>), [genesis-mission](<https://devfeed.tech/tags/genesis-mission.md>), [industry](<https://devfeed.tech/tags/industry.md>), [initiative](<https://devfeed.tech/tags/initiative.md>), [laboratory-for-nuclear-science](<https://devfeed.tech/tags/laboratory-for-nuclear-science.md>), [manufacturing](<https://devfeed.tech/tags/manufacturing.md>), [mathematics](<https://devfeed.tech/tags/mathematics.md>), [mechanical-engineering](<https://devfeed.tech/tags/mechanical-engineering.md>), [mission](<https://devfeed.tech/tags/mission.md>), [national-security](<https://devfeed.tech/tags/national-security.md>), [nuclear-science-and-engineering](<https://devfeed.tech/tags/nuclear-science-and-engineering.md>), [physics](<https://devfeed.tech/tags/physics.md>), [plasma-science-and-fusion-center](<https://devfeed.tech/tags/plasma-science-and-fusion-center.md>), [projects](<https://devfeed.tech/tags/projects.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [quantum-systems](<https://devfeed.tech/tags/quantum-systems.md>), [research](<https://devfeed.tech/tags/research.md>), [research-laboratory-of-electronics](<https://devfeed.tech/tags/research-laboratory-of-electronics.md>), [school-of-engineering](<https://devfeed.tech/tags/school-of-engineering.md>), [school-of-science](<https://devfeed.tech/tags/school-of-science.md>), [science](<https://devfeed.tech/tags/science.md>), [supercomputing](<https://devfeed.tech/tags/supercomputing.md>), [us](<https://devfeed.tech/tags/us.md>)

### AI overview

MIT researchers will contribute to 15 collaborative projects selected for funding under Phase I of the U.S. Department of Energy's Genesis Mission. The projects apply AI, supercomputing, quantum systems, and scientific instruments to research areas including energy, materials, fusion, and national security. Funding remains pending completion of award negotiations.

### Source excerpt

Initial research projects advance national priorities across natural resources, manufacturing, nuclear physics, and more.

[Next page](<https://devfeed.tech/tags/quantum-computing.md?cursor=WyIyMDI2LTA3LTIzVDEyOjAwOjAwKzAwOjAwIiwgIjA5MzEyYjc0LTEzZWUtNDg3MS1hMjljLTA4ZjhmZjJiODRmNCJd>)