Computational Mapping of SH-1 Substrate Morphisms via Multi-Qubit Quantum Circuit Simulation
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This repository presents the foundational computational framework for translating the theoretical parameters of Structured Multiversal Interactions (SMI) into executable quantum-native protocols. Utilizing the IBM Qiskit development environment, this software establishes a multi-qubit processing register to simulate the co-present states of a three-universe system (U1, U2, U3) linked via proprietary SH-1 substrate resonance dynamics. The primary objective of this simulation is to computationally validate the principle of Quantum-Level Multiversal Simultaneity. By initializing target registers into a state of quantum superposition and applying unitary phase-shift operators, the script maps complex relational logic directly onto quantum amplitudes. The execution pipeline models inter-universal connectivity as entanglement pathways (resonance morphisms), proving that multiversal interaction matrices can be evaluated concurrently rather than sequentially. Included in this release are: 1. The core 3-qubit quantum circuit configuration modeling the harmonic closure equation (Ψ1 * Ψ2 = Ψ3). 2. A local statevector simulation pipeline utilizing the AerSimulator backend. 3. An telemetry data extraction routine designed to serialize raw quantum measurement counts into structured JSON payloads for external analytics integration. This work serves as an open-access, reproducible baseline for researchers exploring the mathematical intersection of multi-layered data streams, speculative philosophy, and quantum-native computing infrastructures.



