Quantum Error Correction– tag –
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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
Nord Quantique Reduces Bosonic Qubit SPAM Errors to Below 0.1%, Marking 100-Fold Improvement Towards Fault-Tolerant Quantum Computing
Nord Quantique™ Canada Overview Nord Quantique demonstrated a combined state preparation and measurement (SPAM) error below 0.1% for their bosonic grid-state qubits, a 100-fold improvement over previous results in comparable GKP-based sy... -
Quantum Computing
D-Wave Achieves Major Hardware Breakthrough in Quantum Error Correction with 99.9% Fidelity Two-Qubit Gate
D-Wave Quantum Inc. Canada Overview D-Wave has announced a major hardware breakthrough in quantum error correction for fault-tolerant gate-model quantum computing, demonstrating a fast, high-fidelity (approx. 99.9%) two-qubit entangling ... -
Quantum Computing
Quantum Hybrid Computing Integrates HPC and AI to Accelerate Applications in Drug Discovery, Materials Science, and Optimization
SiliconANGLE USA Overview Quantum hybrid computing is emerging as a critical integration of high-performance computing (HPC), AI, and quantum systems, poised to deliver early value in chemistry, materials science, and optimization, with ... -
Quantum Computing
Advancements Towards ‘Q-Day’: Google Willow, Quantinuum H2, Microsoft Majorana 1 Achieve Key Milestones in Practical Quantum Computing
Global Resilience Institute USA Overview Preparation for 'Q-Day' (when quantum computers break current encryption) emphasizes not only the physical qubit count but also their quality, coherence time, and error rates. NIST finalized its P... -
Quantum Computing
Rice University Joins DOE Quantum Science Center, Securing $900K Funding for Real-Time Quantum Error Correction Decoding Algorithms on High-Performance Classical Computing
Rice University News USA Overview Rice University has officially joined the U.S. Department of Energy's (DOE) Quantum Science Center (QSC), expanding its presence in national fault-tolerant quantum computing (FTQC) R&D. The Rice rese... -
Quantum Computing
Advancements in Quantum Error Correction: Surface Codes Integrate Hundreds of Physical Qubits into Logical Qubits for Fault-Tolerant Quantum Computing
Quantagram Unknown Overview Quantum Error Correction (QEC) is an essential technique designed to prevent error accumulation in quantum processors, ultimately enabling the construction of logical qubits that preserve data longer than phys... -
Quantum Computing
AI and Quantum Race Accelerates: China Sees Breakthroughs Mirroring Google Willow’s Error Correction Scalability Amidst Key Industry Advancements
Live Trading News USA Overview Live Trading News reports that quantum computing reached an inflection point in 2026, with error correction now scaling effectively, exemplified by Google's Willow processor. Significant developments includ... -
Quantum Computing
DOE Targets Fault-Tolerant Quantum Computer by 2028; Rice University Joins Team to Tackle Error Correction Decoding Scalability
The Daily Quantum USA Overview The DOE has set an aggressive target for a fault-tolerant quantum computer by 2028, with Rice University joining its Quantum Science Center (QSC) to research scaling quantum error correction decoding. Rice ... -
Quantum Computing
Quantum Computer Performance Comparison: Quantinuum Helios, Google Willow, and Atom Computing AC1000 Lead in Respective Strengths
New Market Pitch USA Overview New Market Pitch compares leading quantum computers, highlighting distinct strengths: Quantinuum's Helios with 98 fully connected trapped barium-ion qubits boasts high average two-qubit fidelity. Google's Wi...