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Quantum Computing
Machine Learning Advances Decoding of Topological Quantum Codes: Key for Fault-Tolerant Quantum Computing
arXiv Global Overview This academic paper explores the use of machine learning (ML) for decoding topological quantum codes, an essential component of quantum error correction (QEC). Decoding translates stabilizer measurement outcomes int... -
Quantum Computing
Utilities Sector Forecasts Increased Demand, Approaching “Commercial Tipping Point” for Quantum Computing by 2028-2030
Utility Dive USA Overview Quantum computing offers significant speedups for problems like large-scale optimization and materials science, highly relevant for the utility sector. While the technology is currently in the "noisy intermediat... -
Quantum Computing
Arizona Researchers and Nord Quantique Advance Quantum Error Correction, Dramatically Lowering Logical Qubit Error Rates
University of Arizona USA Overview Researchers at the University of Arizona have achieved a significant breakthrough in quantum error correction, substantially reducing logical qubit error rates using an advanced surface code technique. ... -
Quantum Computing
India’s QpiAI Unveils 8-Inch Quantum Chip Foundry in Bengaluru, Aiming for 10,000-Qubit Processors
The Quantum Insider India Overview Indian full-stack quantum and AI startup QpiAI has inaugurated an advanced 8-inch quantum processing unit (QPU) manufacturing facility in Bengaluru. This foundry, designated Phase 2 of its R&D cente... -
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
Quantagram Explains Surface Code as Key to Fault-Tolerant Quantum Computing, Highlighting Importance of Fast Classical Decoding
Quantagram USA Overview Quantagram has published an article elucidating the concept of the surface code, a critical enabler for fault-tolerant quantum computing. The piece details how the surface code detects and corrects quantum errors,... -
Quantum Computing
TISI and Osaka University Achieve Commercial-Solver-Level Accuracy for Over 10,000 Power Resource Optimization via Quantum Computer
Osaka University Japan Overview TISI Corporation and Osaka University's Quantum Information and Quantum Life Sciences Research Center demonstrated quantum computers' applicability to large-scale combinatorial optimization problems, achie... -
Quantum Computing
UCLA-led Team Secures $4 Million NSF Award to Design 60-Logical-Qubit Fault-Tolerant Quantum Computer Based on Trapped Ions
UCLA USA Overview A UCLA-led team received $4 million in NSF funding through the National Quantum Virtual Laboratory (NQVL) to develop a fault-tolerant quantum computer design based on trapped atomic ions. The project, "FTL: Accelerating... -
Quantum Computing
Rigetti Computing Reports 99.1% 2-Qubit Gate Fidelity on 108-Qubit ‘Cepheus-1’ System in Q2 2026 Earnings, Targets 1,000 Qubits at 99.9% Fidelity within Three Years
Rigetti Computing USA Overview Rigetti Computing reported Q2 2026 financial results, highlighting continued progress in quantum advantage milestones, including a 99.1% median two-qubit gate fidelity on its 108-qubit 'Cepheus-1' system. T... -
Quantum Computing
BlueQubit, Qedma, IBM, and RIKEN Collaborate to Achieve Quantum Advantage in Material Behavior Prediction on Error-Mitigated Quantum Processors
BlueQubit (via BusinessWire) USA Overview BlueQubit, Qedma, IBM, and RIKEN have jointly demonstrated "Quantum Advantage" in predicting complex material behaviors on error-mitigated quantum processors, where classical supercomputers faile...