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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

本代码仓库配套于投稿至《Classical and Quantum Gravity》(经典与量子引力)的论文《源自静态量子相干场的涌现引力与宇宙加速(Emergent Gravity and Cosmic Acceleration from Static Quantum Coherence Fields)》,提供相关模拟脚本。该代码建模了无需引入宇宙学常数的情况下,静态、空间结构化量子相干场Q(x)如何引发晚期宇宙学加速。 本脚本模拟了置于一维相干空穴(此处Q=0)两侧的两个星系。粒子在由类泊松关系式∇²Φ = Q推导得出的曲率梯度作用下演化,以此展示空穴尺度的退相干如何产生有效斥力。此外还包含了Q分布平坦的对照模拟以供对比。 研究结果支撑了如下假说:引力现象可由空间纠缠结构与相干损失涌现而来,将几何加速与量子场的信息属性相联系。 文件内容: Figure_1_Void_Driven_Separation_1D.py:复现论文中的模拟结果与配套绘图。 运行依赖: Python 3.10及以上版本 NumPy库 Matplotlib库 适用受众:对涌现引力(Emergent Gravity)、量子信息几何、基于退相干的宇宙学以及暗能量替代理论感兴趣的研究人员。 许可证:MIT许可证

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2025-06-14
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