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Static Q Void Separation Simulation Code

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Zenodo2025-06-14 更新2026-05-26 收录
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This repository provides the simulation script accompanying the paper "Emergent Gravity and Cosmic Acceleration from Static Quantum Coherence Fields", submitted to Classical and Quantum Gravity. The code models how late-time cosmological acceleration can arise from a static, spatially structured quantum coherence field Q(x) without invoking a cosmological constant. The script simulates two galaxies placed on either side of a 1D coherence void (where Q = 0). Particles evolve under curvature gradients derived from the Poisson-like relation ∇^2Φ = Q, demonstrating how void-scale decoherence generates effective repulsion. A control simulation with a flat Q profile is included for comparison. The results support the hypothesis that gravitational phenomena can emerge from spatial entanglement structure and coherence loss, linking geometric acceleration to the informational properties of quantum fields. Contents: Figure_1_Void_Driven_Separation_1D.py: Reproduces the simulation and plots shown in the manuscript. Requirements: Python 3.10+ NumPy Matplotlib Intended Audience:Researchers interested in emergent gravity, quantum information geometry, decoherence-based cosmology, and alternatives to dark energy. License:MIT License

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Zenodo
创建时间:
2025-06-14
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