# Quantum

Published articles for Quantum.

This is one page of public article previews, not the complete archive. Follow Next page to continue. Summaries are not the original full articles.

## NVIDIA Adds CUDA-Q Logical for Fault-Tolerant Quantum Application Design

DevFeed: [NVIDIA Adds CUDA-Q Logical for Fault-Tolerant Quantum Application Design](<https://devfeed.tech/articles/nvidia-cuda-q-logical-debuts-with-a-7x-fermilab-speedup-and-a-10x-cut-in-diraq-s-qubit-estimate-26754.md>)

Original publisher: [Read original article](<https://www.storagereview.com/news/nvidia-cuda-q-logical-fault-tolerant-quantum-fermilab-diraq>)

Author: Harold Fritts

Published: 2026-09-15T16:47:58Z

Content type: news

Language: en

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

Topics: [CUDA](<https://devfeed.tech/topics/cuda.md>), [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [Nvidia](<https://devfeed.tech/topics/nvidia.md>), [Orchestration](<https://devfeed.tech/topics/orchestration.md>), [Open Source](<https://devfeed.tech/topics/open-source.md>), [Algorithm](<https://devfeed.tech/topics/algorithm.md>)

Tags: [ai](<https://devfeed.tech/tags/ai.md>), [algorithm](<https://devfeed.tech/tags/algorithm.md>), [applications](<https://devfeed.tech/tags/applications.md>), [cuda](<https://devfeed.tech/tags/cuda.md>), [enterprise](<https://devfeed.tech/tags/enterprise.md>), [nvidia](<https://devfeed.tech/tags/nvidia.md>), [open-source](<https://devfeed.tech/tags/open-source.md>), [orchestration](<https://devfeed.tech/tags/orchestration.md>), [quantum](<https://devfeed.tech/tags/quantum.md>)

### AI overview

NVIDIA added CUDA-Q Logical to its open-source CUDA-Q platform for designing applications on fault-tolerant quantum computers. Early-access reports say Fermilab reduced an algorithm design cycle from five months to three weeks, while Iceberg Quantum modeled a Diraq spin-qubit architecture using about 150,000 physical qubits for 1,000 logical qubits.

### Source excerpt

NVIDIA has added CUDA-Q Logical to its open-source CUDA-Q platform, an orchestration layer for building applications that run on fault-tolerant quantum computers, and it arrives with two numbers that are interesting. Fermilab says the tool cut a fault-tolerant algorithm design cycle from five months to three weeks, and Iceberg Quantum used it to show that The post NVIDIA CUDA-Q Logical Debuts With a 7x Fermilab Speedup and a 10x Cut in Diraq's Qubit Estimate appeared first on StorageReview.com.

## 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.

## A theoretical separation between quantum computers & LLMs

DevFeed: [A theoretical separation between quantum computers & LLMs](<https://devfeed.tech/articles/a-theoretical-separation-between-quantum-computers-llms-26801.md>)

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

Author: Srinivasan Arunachalam; Arkopal Dutt; Hari Krovi; Rik Sengupta; Ryan Mandelbaum

Published: 2026-09-15T04:00:00Z

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>), [LLMs](<https://devfeed.tech/topics/llms.md>), [Computer science](<https://devfeed.tech/topics/computer-science.md>)

Tags: [ai](<https://devfeed.tech/tags/ai.md>), [computer-science](<https://devfeed.tech/tags/computer-science.md>), [llms](<https://devfeed.tech/tags/llms.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [research](<https://devfeed.tech/tags/research.md>), [science](<https://devfeed.tech/tags/science.md>)

### AI overview

The article discusses research showing theoretical separations between shallow quantum circuits and restricted large language models. The work identifies computational problems involving function computation and sampling where shallow quantum circuits have a provable advantage, while emphasizing that the results are theoretical rather than immediately practical.

### Source excerpt

Recent research further demonstrates the theoretical abilities of quantum computing

## JDK 27 Is Generally Available with Nine JEP-Backed Enhancements

DevFeed: [JDK 27 Is Generally Available with Nine JEP-Backed Enhancements](<https://devfeed.tech/articles/the-arrival-of-java-27-26790.md>)

Original publisher: [Read original article](<https://inside.java/2026/09/15/jdk-27-available/>)

Author: On September

Published: 2026-09-15T00:00:00Z

Content type: release

Language: en

Sources: [Inside Java](<https://devfeed.tech/sources/inside-java.md>)

Topics: [JDK 27](<https://devfeed.tech/topics/jdk-27.md>), [Java](<https://devfeed.tech/topics/java.md>), [Security](<https://devfeed.tech/topics/security.md>), [Cryptography](<https://devfeed.tech/topics/cryptography.md>), [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>)

Tags: [announce](<https://devfeed.tech/tags/announce.md>), [cryptography](<https://devfeed.tech/tags/cryptography.md>), [improvements](<https://devfeed.tech/tags/improvements.md>), [java](<https://devfeed.tech/tags/java.md>), [jdk](<https://devfeed.tech/tags/jdk.md>), [jdk-27](<https://devfeed.tech/tags/jdk-27.md>), [oracle](<https://devfeed.tech/tags/oracle.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [security](<https://devfeed.tech/tags/security.md>)

### AI overview

Oracle announces the general availability of JDK 27, which includes nine enhancements covered by JDK Enhancement Proposals, including preview and incubator features across the Java language, security, performance, runtime, and libraries.

### Source excerpt

JDK 27 is now available! Oracle is proud to announce the general availability of JDK 27 for developers, enterprises, and end-users.

## 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.

## Cleveland Clinic, RIKEN, IBM named Gordon Bell finalists

DevFeed: [Cleveland Clinic, RIKEN, IBM named Gordon Bell finalists](<https://devfeed.tech/articles/cleveland-clinic-riken-ibm-named-gordon-bell-finalists-17334.md>)

Original publisher: [Read original article](<https://research.ibm.com/blog/gordon-bell-finalists-2026>)

Published: 2026-09-09T04:00:00Z

Content type: news

Language: en

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

Topics: [High-Performance Computing](<https://devfeed.tech/topics/high-performance-computing.md>), [ibm](<https://devfeed.tech/topics/ibm.md>), [Supercomputing](<https://devfeed.tech/topics/supercomputing.md>), [Benchmark](<https://devfeed.tech/topics/benchmark.md>), [data](<https://devfeed.tech/topics/data.md>)

Tags: [automated](<https://devfeed.tech/tags/automated.md>), [chemistry](<https://devfeed.tech/tags/chemistry.md>), [gpu](<https://devfeed.tech/tags/gpu.md>), [hpc](<https://devfeed.tech/tags/hpc.md>), [ibm](<https://devfeed.tech/tags/ibm.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-network](<https://devfeed.tech/tags/quantum-network.md>), [quantum-research](<https://devfeed.tech/tags/quantum-research.md>), [recognition](<https://devfeed.tech/tags/recognition.md>), [research](<https://devfeed.tech/tags/research.md>), [supercomputing](<https://devfeed.tech/tags/supercomputing.md>), [workflows](<https://devfeed.tech/tags/workflows.md>)

### AI overview

Cleveland Clinic, RIKEN, and IBM were named finalists for the 2026 ACM Gordon Bell Prize for quantum-HPC chemistry research. The collaboration simulated a 12,635-atom protein system and reported an automated workflow that reduces coordination and data movement across quantum and classical computing resources.

### Source excerpt

Finalist recognition for one of supercomputing's top prizes arrives as researchers report new progress in automated quantum-HPC chemistry workflows.

## 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.

## VDURA Deploys High-Performance Storage Platform for AI and HPC at New Mexico State University

DevFeed: [VDURA Deploys High-Performance Storage Platform for AI and HPC at New Mexico State University](<https://devfeed.tech/articles/vdura-deploys-high-performance-storage-platform-for-ai-and-hpc-at-new-mexico-state-university-12380.md>)

Original publisher: [Read original article](<https://www.storagereview.com/news/vdura-deploys-high-performance-storage-platform-for-ai-and-hpc-at-new-mexico-state-university>)

Author: Harold Fritts

Published: 2026-09-02T10:00:00Z

Content type: news

Language: en

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

Topics: [Artificial Intelligence](<https://devfeed.tech/topics/ai.md>), [High-Performance Computing](<https://devfeed.tech/topics/high-performance-computing.md>), [Data Infrastructure](<https://devfeed.tech/topics/data-infrastructure.md>), [InfiniBand](<https://devfeed.tech/topics/infiniband.md>), [Post-quantum cryptography](<https://devfeed.tech/topics/post-quantum-cryptography.md>), [Deployment](<https://devfeed.tech/topics/deployment.md>), [Training AI Models](<https://devfeed.tech/topics/training-ai-models.md>), [Hardware](<https://devfeed.tech/topics/hardware.md>), [Low Latency](<https://devfeed.tech/topics/low-latency.md>), [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>)

Tags: [ai](<https://devfeed.tech/tags/ai.md>), [data-infrastructure](<https://devfeed.tech/tags/data-infrastructure.md>), [deployment](<https://devfeed.tech/tags/deployment.md>), [enterprise](<https://devfeed.tech/tags/enterprise.md>), [enterprise-storage](<https://devfeed.tech/tags/enterprise-storage.md>), [hardware](<https://devfeed.tech/tags/hardware.md>), [high-performance-computing](<https://devfeed.tech/tags/high-performance-computing.md>), [infiniband](<https://devfeed.tech/tags/infiniband.md>), [low-latency](<https://devfeed.tech/tags/low-latency.md>), [post-quantum-cryptography-pqc](<https://devfeed.tech/tags/post-quantum-cryptography-pqc.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [storage](<https://devfeed.tech/tags/storage.md>)

### AI overview

VDURA has moved its storage platform at New Mexico State University into full production to support AI and high-performance computing research. The deployment combines NVMe flash and high-density HDD tiers through a global namespace over InfiniBand, allowing separate scaling of performance and capacity. It also supports NMSU's post-quantum cryptography research and large-scale data pipeline projects.

### Source excerpt

VDURA has completed the deployment of its data platform at New Mexico State University (NMSU), moving the system into full production. The infrastructure is designed to serve the university's research community with a high-durability, high-throughput storage environment tailored specifically for artificial intelligence and high-performance computing (HPC) workloads. NMSU, which holds Carnegie R1 status and manages The post VDURA Deploys High-Performance Storage Platform for AI and HPC at New Mexico State University appeared first on StorageReview.com.

## Sites using PQC (September 2026)

DevFeed: [Sites using PQC (September 2026)](<https://devfeed.tech/articles/sites-using-pqc-september-2026-30242.md>)

Original publisher: [Read original article](<https://www.netmeister.org/blog/pqc-use-2026-09.html>)

Published: 2026-09-01T14:49:46Z

Content type: article

Language: en

Sources: [Signs of Triviality](<https://devfeed.tech/sources/signs-of-triviality.md>)

Topics: [Post-quantum cryptography](<https://devfeed.tech/topics/post-quantum-cryptography.md>), [Post-Quantum](<https://devfeed.tech/topics/post-quantum.md>), [TLS (Transport Layer Security)](<https://devfeed.tech/topics/tls.md>), [Cryptography](<https://devfeed.tech/topics/cryptography.md>)

Tags: [2026](<https://devfeed.tech/tags/2026.md>), [cryptography](<https://devfeed.tech/tags/cryptography.md>), [post](<https://devfeed.tech/tags/post.md>), [post-quantum](<https://devfeed.tech/tags/post-quantum.md>), [post-quantum-cryptography](<https://devfeed.tech/tags/post-quantum-cryptography.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [september-2026](<https://devfeed.tech/tags/september-2026.md>), [sites](<https://devfeed.tech/tags/sites.md>), [tls](<https://devfeed.tech/tags/tls.md>), [top](<https://devfeed.tech/tags/top.md>), [using](<https://devfeed.tech/tags/using.md>)

### AI overview

A periodic check examines which of the top 1 million domains support post-quantum cryptography in their TLS key exchange.

### Source excerpt

One more periodic check of which of the top 1M domains support post-quantum cryptography in their TLS key exchange.

## 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.

## The search for quantum advantage in differential equations

DevFeed: [The search for quantum advantage in differential equations](<https://devfeed.tech/articles/the-search-for-quantum-advantage-in-differential-equations-17336.md>)

Original publisher: [Read original article](<https://research.ibm.com/blog/hari-krovi-differential-equations>)

Author: Robert Davis

Published: 2026-08-03T13:00:00Z

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>), [Algorithms, Complexity](<https://devfeed.tech/topics/algorithms-complexity.md>), [Complex Systems](<https://devfeed.tech/topics/complex-systems.md>)

Tags: [algorithms](<https://devfeed.tech/tags/algorithms.md>), [complex-systems](<https://devfeed.tech/tags/complex-systems.md>), [ibm](<https://devfeed.tech/tags/ibm.md>), [mathematical-sciences](<https://devfeed.tech/tags/mathematical-sciences.md>), [physics](<https://devfeed.tech/tags/physics.md>), [q-a](<https://devfeed.tech/tags/q-a.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-algorithms](<https://devfeed.tech/tags/quantum-algorithms.md>), [research](<https://devfeed.tech/tags/research.md>), [systems](<https://devfeed.tech/tags/systems.md>)

### AI overview

IBM researcher Hari Krovi discusses quantum algorithms for solving certain differential equations and their potential to scale beyond classical methods in selected applications.

### Source excerpt

New quantum algorithms could unlock faster ways to model the complex systems behind circuits, fluids, finance, and more.

## Ten advances in mathematics and theoretical computer science

DevFeed: [Ten advances in mathematics and theoretical computer science](<https://devfeed.tech/articles/ten-advances-in-mathematics-and-theoretical-computer-science-6679.md>)

Original publisher: [Read original article](<https://openai.com/index/ten-advances-in-mathematics>)

Published: 2026-08-01T00:00:00Z

Content type: article

Language: en

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

Topics: [AI Chat](<https://devfeed.tech/topics/ai-chat.md>), [Cryptography](<https://devfeed.tech/topics/cryptography.md>)

Tags: [ai](<https://devfeed.tech/tags/ai.md>), [chatgpt](<https://devfeed.tech/tags/chatgpt.md>), [complexity](<https://devfeed.tech/tags/complexity.md>), [cost](<https://devfeed.tech/tags/cost.md>), [cryptography](<https://devfeed.tech/tags/cryptography.md>), [model](<https://devfeed.tech/tags/model.md>), [openai](<https://devfeed.tech/tags/openai.md>), [publication](<https://devfeed.tech/tags/publication.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [research](<https://devfeed.tech/tags/research.md>), [science](<https://devfeed.tech/tags/science.md>)

### AI overview

OpenAI presents ten AI-assisted results on long-standing problems in mathematics and theoretical computer science. An internal Astra model produced solutions that humans prepared into manuscripts and that were formalized in Lean certificates.

### Source excerpt

OpenAI shares new results on long-standing open problems in mathematics and theoretical computer science, including advances in geometry, cryptography, and complexity.

## 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.

## IBM to acquire HRL Laboratories

DevFeed: [IBM to acquire HRL Laboratories](<https://devfeed.tech/articles/ibm-to-acquire-hrl-laboratories-17337.md>)

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

Author: Ryan Mandelbaum

Published: 2026-07-23T11:00:00Z

Content type: article

Language: en

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

Topics: [ibm](<https://devfeed.tech/topics/ibm.md>), [.NET Conf](<https://devfeed.tech/topics/net-conf.md>)

Tags: [acquisition](<https://devfeed.tech/tags/acquisition.md>), [explainer](<https://devfeed.tech/tags/explainer.md>), [history](<https://devfeed.tech/tags/history.md>), [ibm](<https://devfeed.tech/tags/ibm.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [research](<https://devfeed.tech/tags/research.md>), [science](<https://devfeed.tech/tags/science.md>), [technology](<https://devfeed.tech/tags/technology.md>)

### AI overview

IBM announced a definitive agreement to acquire HRL Laboratories, citing HRL's silicon-spin qubit expertise as complementary to IBM's quantum-computing research. The article also recounts HRL's history, including its contributions to aviation, electronics, radar, and the invention of the laser.

### Source excerpt

Exploring the storied history of HRL Laboratories, from the invention of the laser to silicon spin qubits.

## What are spin qubits?

DevFeed: [What are spin qubits?](<https://devfeed.tech/articles/what-are-spin-qubits-17350.md>)

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

Published: 2026-07-23T11:00:00Z

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>)

Tags: [acquisition](<https://devfeed.tech/tags/acquisition.md>), [explainer](<https://devfeed.tech/tags/explainer.md>), [ibm](<https://devfeed.tech/tags/ibm.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-computing](<https://devfeed.tech/tags/quantum-computing.md>), [quantum-research](<https://devfeed.tech/tags/quantum-research.md>), [quantum-systems](<https://devfeed.tech/tags/quantum-systems.md>), [research](<https://devfeed.tech/tags/research.md>)

### AI overview

IBM explains spin qubits, including how electron spin can encode quantum information and how quantum dots control individual electrons. The article discusses spin qubits in the context of IBM's acquisition of HRL Laboratories and the scaling of quantum technologies.

### Source excerpt

Spin qubits are an important element of IBM's recent HRL Laboratories acquisition.

## IBM commits $50M in quantum access for US Genesis Mission

DevFeed: [IBM commits $50M in quantum access for US Genesis Mission](<https://devfeed.tech/articles/ibm-commits-50m-in-quantum-access-for-us-genesis-mission-17338.md>)

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

Published: 2026-07-22T20:00:00Z

Content type: release

Language: en

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

Topics: [ibm](<https://devfeed.tech/topics/ibm.md>), [Artificial Intelligence](<https://devfeed.tech/topics/ai.md>), [Quantum Computing](<https://devfeed.tech/topics/quantum-computing.md>), [High-Performance Computing](<https://devfeed.tech/topics/high-performance-computing.md>), [Supercomputing](<https://devfeed.tech/topics/supercomputing.md>)

Tags: [accelerate](<https://devfeed.tech/tags/accelerate.md>), [ai](<https://devfeed.tech/tags/ai.md>), [department-of-energy](<https://devfeed.tech/tags/department-of-energy.md>), [discovery](<https://devfeed.tech/tags/discovery.md>), [government](<https://devfeed.tech/tags/government.md>), [high-performance-computing](<https://devfeed.tech/tags/high-performance-computing.md>), [ibm](<https://devfeed.tech/tags/ibm.md>), [news](<https://devfeed.tech/tags/news.md>), [project](<https://devfeed.tech/tags/project.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [supercomputing](<https://devfeed.tech/tags/supercomputing.md>), [us](<https://devfeed.tech/tags/us.md>)

### AI overview

IBM says a project was selected by the U.S. Department of Energy's Genesis Mission to accelerate AI-driven scientific discovery and will contribute up to $50 million in quantum system access. The mission combines AI, quantum computing, supercomputing, and scientific instruments.

### Source excerpt

An IBM project was also selected to accelerate AI-driven quantum application discovery.

[Next page](<https://devfeed.tech/tags/quantum.md?cursor=WyIyMDI2LTA3LTIyVDIwOjAwOjAwKzAwOjAwIiwgImYxZDEzYWYwLTBmYTctNGJmZS04YWEwLTM0MGUxYjJjMDEwYiJd>)