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Atom Computing selected by DARPA for the next stage of exploring near-term utility-scale quantum computing with neutral atoms - Yahoo Finance

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⚡ Quantum Brief
DARPA selected Atom Computing for Stage B of its Quantum Benchmarking Initiative, advancing its neutral-atom quantum computing toward utility-scale applications. The year-long project requires a detailed R&D roadmap, risk assessment, and prototype development. Atom Computing demonstrated key capabilities, including 1,000+ physical qubits, all-to-all connectivity, and mid-circuit measurement. Recent milestones include entangling 24 logical qubits and error-corrected computations with 28 logical qubits. Microsoft will support Atom Computing with algorithmic tools and error correction codes, strengthening the collaboration. This partnership aims to accelerate fault-tolerant quantum computing development. The company’s scalable neutral-atom technology offers long coherence times and novel networking, positioning it for near-term industrial utility. Its on-premises systems are already deployed, including a recent sale to Nordic quantum initiative QuNorth. CEO Ben Bloom called the DARPA selection a critical step toward proving utility-scale quantum computing. The focus remains on delivering breakthroughs for complex applications faster than conventional timelines.
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This is a paid press release. Contact the press release distributor directly with any inquiries. Atom Computing selected by DARPA for the next stage of exploring near-term utility-scale quantum computing with neutral atoms PR Newswire November 7, 2025 3 min read BERKELEY, Calif., Nov. 7, 2025 /PRNewswire/ -- Atom Computing has been selected by the Defense Advanced Research Projects Agency (DARPA) to proceed to the next stage of exploring how Atom's highly-scalable neutral atom technology will realize utility-scale quantum computing in the near term.

Atom Computing Logo Earlier this year, DARPA announced that Atom Computing was selected for Stage A of the Quantum Benchmarking Initiative (QBI), an expansion of the existing Underexplored Systems for Utility-Scale Quantum Computing (US2QC) program. The QBI aims to determine the possibility of building an industrially useful quantum computer much faster than conventional predictions. Yesterday, DARPA announced that Atom Computing has been selected for Stage B of the QBI program, a year-long project during which participating companies are asked to describe an R&D development plan c apable of realizing the utility-scale quantum computer, the risks associated with that plan and the planned risk mitigation steps, and the prototypes needed to burn down these risks. As part of the program, Microsoft has agreed to also provide algorithmic support and error correction codes to Atom Computing. To realize a utility-scale quantum computer, Atom Computing leverages the scalability and flexibility of its technology, as well as multiple critical platform capabilities such as high-fidelity gate operations, all-to-all qubit connectivity, 1,000+ physical qubits, long coherence times, mid-circuit measurement with qubit reset and reuse, and novel networking technology. These capabilities enabled a joint demonstration with Microsoft of the entanglement of 24 logical qubits, and error detection, correction, and computation with 28 logical qubits.

The team recently demonstrated a new set of platform capabilities which improve the quality, reliability, and robustness of logical qubits. "Being selected to proceed to Stage B of the QBI program is an amazing opportunity for our team to demonstrate how Atom Computing will achieve utility-scale quantum computing", said Dr. Ben Bloom, Founder and CEO of Atom Computing. "We are looking forward to working with the team at DARPA to deliver on the exciting promise of pushing state-of-the-art quantum computing technology to utility scale applications." About Atom Computing Atom Computing is developing large-scale quantum computers to enable companies and researchers to achieve unprecedented computational breakthroughs. Utilizing highly scalable arrays of optically trapped neutral atoms, the company has developed systems with over 1,000 qubits, featuring advanced capabilities towards fault-tolerant quantum computing. Atom Computing's on-premises systems provide customers with new computational tools and logical qubit capabilities to address increasingly complex applications and to grow their quantum ecosystem. QuNorth, a Nordic quantum initiative funded by EIFO and Novo Nordisk Foundation, recently announced the purchase of Atom Computing's on-premises system. The system, to be named 'Magne', will be installed and brought online in Copenhagen, Denmark. Learn more at atom-computing.

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