# Quantum Systems

Published articles for Quantum Systems.

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## 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.

## 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.

## 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.

## 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.

## 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.

## A verifiable quantum advantage

DevFeed: [A verifiable quantum advantage](<https://devfeed.tech/articles/a-verifiable-quantum-advantage-6743.md>)

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

Published: 2025-10-22T15:07:00Z

Content type: article

Language: en

Sources: [The latest research from Google](<https://devfeed.tech/sources/the-latest-research-from-google.md>)

Topics: [Algorithm](<https://devfeed.tech/topics/algorithm.md>), [systems](<https://devfeed.tech/topics/systems.md>), [Google](<https://devfeed.tech/topics/google.md>)

Tags: [2025](<https://devfeed.tech/tags/2025.md>), [google](<https://devfeed.tech/tags/google.md>), [quantum](<https://devfeed.tech/tags/quantum.md>), [quantum-systems](<https://devfeed.tech/tags/quantum-systems.md>), [research](<https://devfeed.tech/tags/research.md>)

### AI overview

Google Quantum AI researchers describe Quantum Echoes, a quantum algorithm that measures out-of-time-order correlators to demonstrate a verifiable quantum advantage. The approach produces reproducible expectation values and may support practical applications such as Hamiltonian learning in nuclear magnetic resonance, where classical computation faces exponentially scaling costs.

### Source excerpt

Quantum