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The 0.25 Protocol: 132-Sigma Quantum Resurrection Archive (IBM Torino 133-Qubit)

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Zenodo2026-01-07 更新2026-05-26 收录
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The 0.25 Protocol: A Complete Framework for Quantum Information Resurrection 1. OVERVIEW: THE "GEOMETRIC SKELETON" (e^-pi/4) This repository hosts the definitive experimental framework for the 0.25 Protocol. We demonstrate a persistent coherence sanctuary within the "Thermal Death Zone" of quantum evolution on the IBM Torino (133-qubit Heron r1) and IBM Fez processors. The project identifies a fundamental scaling law at the Non-Hermitian Exceptional Point (EP), proving that quantum information survival is governed by a geometric constant e^(-pi/4) approx 0.456. We present evidence across two regimes: Ideal Regime: Direct convergence to ~0.44-0.46 in shallow/specific pump experiments (Holographic Pump). Robust Regime: A renormalized locking plateau at ~0.17 in deep circuits (150-300 layers), demonstrating "Inverse Thermalization" against heavy hardware noise. 2. DIGITAL FORENSIC ARCHIVE (RAW DATA PACKETS) To ensure absolute reproducibility ("Full Disclosure"), we provide the unprocessed data packets directly from the IBM Quantum Cloud. These files serve as the digital chain of custody for the 132-Sigma claim. Raw_Data_48k_Shots.zip: The complete, bit-by-bit raw results for the final 48,000-shot "Resurrection" campaign. 01_Raw_Data_Scaling_Law.zip: Contains the raw job bins for the parameter scan. This data confirms the e^(-pi * gamma) convergence across different gamma values (0.20, 0.25, 0.30). 02_Raw_Data_Holographic_Pump.zip: The original output files for the entropy pumping experiments (corresponding to the PDF reports). 3. VERIFICATION ENGINE (THE JUDGE) scaling_law.py: [New] The strategic scanning engine. It executes a differential parameter scan (Gamma=0.20, 0.25, 0.30) across varying circuit depths (10-150 layers) on ibm_torino. It employs XY4 Dynamical Decoupling and a Parametric Inverse Pump to rigorously validate that the locking effect is a tunable physical parameter. 4. EXPERIMENTAL VERDICT (132.76 SIGMA) Statistical Power: Verified via 48,000 precision shots on industrial hardware. final_48k_verdict.py: Master analysis script for the 48,000 verifiable shots. build_optimized_butterfly.py: Logic for constructing the 300-layer optimized Butterfly circuit. random_scrambling_benchmark.py: Baseline control proving standard hardware thermalization to 12.5% without the protocol. 5. DATA INTEGRITY & LIVE AUDIT Transparency tools to fetch raw hardware evidence directly from the IBM Quantum Cloud. cloud_evidence_sync.py: [The Audit Tool] This script uses the Qiskit Runtime V2 interface to pull the original Result objects for all 48,000 shots. Experimental_Data_Master_Final.csv: The comprehensive "Ledge" cross-reference containing active Job IDs, hardware metadata, and probability distributions. 6. TOPOLOGICAL & SCALING VALIDATION Eliminating "Hardware Bias" through extensive scaling across the 133-qubit lattice. cosmological_constant_scan.py: High-precision sweeping identifying the singular 0.25 peak. sniper_evidence_0268.json: Data file for the high-precision sweep. finite_size_scaling.py: Proof of scale-invariance (L=16 to 28). fss_scaling_data.json: Data supporting the Finite Size Scaling analysis. stress_test_data.json: Performance metrics under extreme topological strain. 7. THEORETICAL MECHANISM (NON-HERMITIAN PUMP) Quantitative reports bridging theory and noisy hardware. Holographic_Pump_d5ehflv67pic73820p6g.pdf: Technical report on entropy-coherence pumping at the EP (Visualizing the 0.456 convergence). Holographic_Refiner_d5eho9v67pic738215r0.pdf: Analysis of signal purification and "Information Sedimentation." entropy_genesis_ep.py: Mathematical simulation of the e^(-pi/4) "God Fingerprint." holographic_dark_matter.py: Simulation script for the sedimentation plateau. final_sedimentation_data.json: Observation data of the persistent sedimentation plateau. 8. LATTICE ENGINEERING (INDUSTRIAL BLUEPRINT) Implementation for mapping the 0.25 lock onto large-scale superconducting grid architectures. superconducting_lattice.py: Lattice mapping logic. geometric_lock_mechanism.py: The core locking algorithm. tensor_network_solver.py: Validation solver for the lattice. Project Leader: Fujia Wang (Independent Researcher) Significance: A verified holographic coherence sanctuary. The protocol demonstrates that the geometric constant e^(-pi/4) acts as a robust skeleton, allowing quantum states to survive via renormalization (at ~17%) even in the deep thermal death zone.

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2026-01-07
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