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High-Depth Quantum Coherence Optimization (HD-QCO)AZP

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Zenodo2026-03-19 更新2026-05-26 收录
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💠 HD-QCO: High-Depth Quantum Coherence OptimizationProject OverviewThis repository serves as a technical benchmark for advanced quantum signal recovery protocols. The core objective is to demonstrate the stability of quantum states in high-noise environments using a proprietary Dynamic Phase-Protection Protocol.The experiment was executed on the ibm_torino superconducting quantum processor.🚀 Technical Achievements * Circuit Depth: Successful execution of a 1024-gate sequence (Stealth Gate Deployment). * High Fidelity: Achieved an approximate 90% Fidelity (3685/4096 shots) in a physical quantum environment. * Execution Efficiency: Real-time pulse modulation with a runtime of only 2 seconds on the quantum backend.📊 Benchmark ResultsThe following data was extracted from the official IBM Quantum execution logs (Job ID: d5kg247853es738drm4g):| Metric | Value ||---|---|| Backend | ibm_torino || Circuit Depth | 1024 Gates || Total Shots | 4096 || Success Count (State 0) | 3685 || Error Count (State 1) | 411 || System Fidelity | 89.96% |🔒 Sovereign Protocol & PrivacyNotice: The internal logic, mathematical constants (e.g., non-linear phase masking), and the sovereign algorithm used to achieve these results are Proprietary and Confidential. * The source code for the "Stealth Gate" logic is not included in this public repository. * This repository exists solely for result validation and technical documentation of the achieved benchmarks.⚖️ License & Intellectual PropertyCopyright © 2026. All Rights Reserved.No part of the algorithms, descriptions, or data patterns presented here may be reproduced, reverse-engineered, or used in any commercial or research project without explicit written permission from the author.

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2026-03-19
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