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Main Author: Sacha, Mohamed
Format: Recurso digital
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Published: Zenodo 2026
Online Access:https://doi.org/10.5281/zenodo.19598962
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author Sacha, Mohamed
author_facet Sacha, Mohamed
contents <p>This project introduces the P4 Framework, a high-performance Quantum Cellular Automaton (QCA) engine designed to bridge the gap between theoretical quantum advantage and industrial-grade reliability. Built upon the Quantum Information Copy Time (QICT) mathematical framework—published in Quantum Reports—the platform simulates complex molecular and material interactions under strict SU(3)xSU(2)xU(1) gauge-inspired dynamics.</p> <p>Unlike conventional simulators, the P4 Engine integrates Hardware-Aware Noise Modeling, utilizing real-world calibration data from advanced QPU architectures (e.g., IBM Quantum Eagle/Osprey) to account for T_1/T_2 relaxation and gate errors. The core innovation lies in its QICT-Certification Module, which leverages Receiver Theorem 8 to provide a provable, non-statistical guarantee of result integrity. By calculating the physical "Copy Horizon," the framework generates cryptographic signatures (history_hash) that certify simulation outcomes against the Quantum Speed Limit (QSL).</p> <p>This tool serves as a critical infrastructure for Life Sciences, Pharma, and Defense, offering a "Mathematical Seal of Trust" for quantum results where regulatory compliance and absolute precision are non-negotiable.</p>
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spellingShingle QCA Simulation Framework: A QICT-Certified Engine for High-Fidelity Molecular Dynamics and Quantum Hardware Auditing
Sacha, Mohamed
<p>This project introduces the P4 Framework, a high-performance Quantum Cellular Automaton (QCA) engine designed to bridge the gap between theoretical quantum advantage and industrial-grade reliability. Built upon the Quantum Information Copy Time (QICT) mathematical framework—published in Quantum Reports—the platform simulates complex molecular and material interactions under strict SU(3)xSU(2)xU(1) gauge-inspired dynamics.</p> <p>Unlike conventional simulators, the P4 Engine integrates Hardware-Aware Noise Modeling, utilizing real-world calibration data from advanced QPU architectures (e.g., IBM Quantum Eagle/Osprey) to account for T_1/T_2 relaxation and gate errors. The core innovation lies in its QICT-Certification Module, which leverages Receiver Theorem 8 to provide a provable, non-statistical guarantee of result integrity. By calculating the physical "Copy Horizon," the framework generates cryptographic signatures (history_hash) that certify simulation outcomes against the Quantum Speed Limit (QSL).</p> <p>This tool serves as a critical infrastructure for Life Sciences, Pharma, and Defense, offering a "Mathematical Seal of Trust" for quantum results where regulatory compliance and absolute precision are non-negotiable.</p>
title QCA Simulation Framework: A QICT-Certified Engine for High-Fidelity Molecular Dynamics and Quantum Hardware Auditing
url https://doi.org/10.5281/zenodo.19598962