QuEra Computing– tag –
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New Technology
Toric Code: The Foundational Topological Framework for Quantum Error Correction
QuEra USA Overview The Toric Code, introduced by Alexei Kitaev in 1997, stands as an iconic topological framework for quantum error correction, laying the groundwork for protecting quantum information. This specialized stabilizer code ar... -
Quantum Computing
Quantum Error Correction Advancements Propel Codebreaking Quantum Computers: Breakthroughs in LDPC Codes and Neutral Atom Architectures
EurekAlert! USA Overview Advances in quantum error correction (QEC) are accelerating the development of Cryptographically Relevant Quantum Computers (CRQCs). A Caltech paper proposes a neutral atom-based QC architecture with qLDPC-based ... -
Quantum Computing
S&P Global Q2 Quantum Report Highlights IBM’s Nighthawk Processor and Logical Qubit Progress
S&P Global USA Overview S&P Global's Q2 2026 Quantum Quarterly report reveals significant progress by major hardware vendors targeting fault-tolerant quantum systems between 2027 and 2030. IBM is set to launch a 7,500-gate Nighthawk ... -
Quantum Computing
QuEra Unveils Roadmap for Fault-Tolerant Quantum Computing: 256-Logical-Qubit ‘Megaquop’ by 2028, 1,000+ Logical-Qubit ‘Gigaquop’ by 2029
Digitalisation World Magazine USA Overview QuEra has unveiled an ambitious roadmap for fault-tolerant quantum computing, targeting a 256 error-corrected logical qubit "megaquop" system by 2028, and a "gigaquop" system with over 1,000 log... -
Quantum Computing
Pasqal Appoints Former HPE HPC & AI Leader as Chief Commercial Officer to Drive Enterprise-Scale Quantum Deployment
Business Wire France Overview Pasqal has appointed a former High-Performance Computing (HPC) and AI leader from Hewlett Packard Enterprise (HPE) as its Chief Commercial Officer (CCO). This strategic move aims to accelerate the deployment... -
Quantum Computing
QuEra Explains Qubit T1 Relaxation Time, Highlights Gate Speed-to-Coherence Time Ratio as Key Performance Metric
QuEra USA Overview QuEra explains T1 relaxation time in quantum computing, noting its critical importance for qubit stability. The article emphasizes that the true measure of performance is the ratio of gate speed to coherence time (T1 a... -
Quantum Computing
QuEra Computing Unveils Quantum Computers with Integrated Quantum Error Correction Capabilities, Advancing Fault-Tolerant Quantum Computing
QuEra USA Overview QuEra Computing has unveiled a line of quantum computers featuring quantum error correction (QEC), leveraging breakthrough technology. This announcement indicates QuEra's strong commitment to advancing fault-tolerant q... -
Quantum Computing
Neutral Atom Quantum Computing Companies QuEra, Atom Computing, and Pasqal Accelerate Towards Fault-Tolerant Systems
Tom's Hardware USA Overview Neutral atom quantum computing has made significant technical strides in 2025 and early 2026, with companies like QuEra, Atom Computing, and Pasqal leading the development. QuEra announced its Libra fault-tole... -
Quantum Computing
QuEra Unveils Fault-Tolerant Roadmap Including GigaQuop-Class Systems, Expands AWS Partnership for 2028 “Libra” Launch on Amazon Braket
PR Newswire USA Overview QuEra Computing detailed the next phase of its fault-tolerant quantum roadmap on June 25, 2026, including next-generation GigaQuop-class quantum computers slated for 2028-2029. The company also announced an expan... -
Quantum Computing
QuEra Computing Unveils Fault-Tolerant Roadmap Targeting Megaquop Logical Performance by 2028, Followed by Gigaquop Capabilities
PR Newswire USA Overview QuEra Computing has released an ambitious roadmap for fault-tolerant quantum computing, aiming to achieve megaquop logical performance with hundreds of logical qubits by 2028, and quickly thereafter, gigaquop log...
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