Quantum Simulation of Singularity Stabilization via Stronger Anti-Time Modulation
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This OpenQASM 2.0 simulation models the stabilization of a quantum singularity through enhanced anti-time modulation effects. The circuit initializes a virtual-time qubit into superposition to represent fluctuating quantum conditions. A strong phase shift (π/2) is applied to an anti-time qubit, simulating an intensified anti-time stabilization mechanism. The virtual-time qubit is then entangled with an emergent real-time qubit, enabling energy transfer and coherence formation. Final Hadamard operations enhance the structure of the emergent real-time qubit. This model explores how stronger anti-time influences could stabilize virtual singularities and facilitate the emergence of classical spacetime behavior from quantum fluctuations.
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Bertan, Gizem创建时间:
2025-04-26



