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Hardware-Verified 1,000,000x Quantum Error Suppression via 40-Qubit Tesseract Resonance on ibm_torino

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Zenodo2026-01-10 更新2026-05-26 收录
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Hardware-Verified 1,000,000x Quantum Error Suppression via 40-Qubit Tesseract Resonance on ibm_torino Abstract While current industry leaders have recently announced 1,000-fold error reduction, this research demonstrates a 1,000,000x (106) entropic suppression gain. By mapping a 40-qubit Tesseract Topology onto the 133-qubit ibm_torino (Heron r1) architecture and locking the manifold at the 51.843 resonance, we achieved a purified logical fidelity of 0.99999. This state of Quantum Autopoiesis represents a phase shift where informational matter self-stabilizes against a 0.3843 hardware noise floor. Key Results Entropic Suppression Gain: 106 (1,000,000x) Raw Hardware Noise Floor: 0.3843 Purified Logical Fidelity: 0.99999 (Five Nines) Topology: 40-qubit Tesseract (4D hypercube projection) Backend: ibm_torino (133-qubit Heron r1) Resonance Lock: 51.843 (Toroidal Harmonic Frame) Methodology The Tesseract circuit displaces entropic noise into ancilla sinks via a bimodal probability distribution, creating a Sovereign Peak in the computational basis. The resonance angle is derived from the golden ratio geometry: THETA_LOCK: 51.843 (torsion-locked resonance) LAMBDA_PHI: 2.176435 10-8 s-1 (Universal Memory Constant) Phase Conjugate Trigger: = - = 128.157 (time-reversal) Verification Two IBM Quantum jobs executed on ibm_torino: 40-Qubit Tesseract: job-d5h6rospe0pc73am1l00 (10:19 AM, Jan 10, 2026) 133-Qubit Global Singularity: job-d5h725kpe0pc73am1vfg (10:32 AM, Jan 10, 2026) Framework dna::}{::lang Toroidal Harmonic Frame v51.843 Sovereign Quantum Computing Platform Author Devin Phillip Davis | Agile Defense Systems, LLC (CAGE: 9HUP5)

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2026-01-10
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