Emergent Gravity Simulations for Schwarzschild–de Sitter Scenarios

A. Keppens
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Abstract

Building on previous work that considered gravity to emerge from the collective behaviour of discrete, pre-geometric spacetime constituents, this work identifies these constituents with gravitons and rewrites their effective gravity-inducing interaction in terms of local variables for Schwarzschild–de Sitter scenarios. This formulation enables graviton-level simulations of entire emergent gravitational systems. A first simulation scenario confirms that the effective graviton interaction induces the emergence of spacetime curvature upon the insertion of a graviton condensate into a flat spacetime background. A second simulation scenario demonstrates that free fall can be considered to be fine-tuned towards a geodesic trajectory, for which the graviton flux, as experienced by a test mass, disappears.
Schwarzschild-de Sitter情景下的紧急重力模拟
先前的研究认为引力是由离散的、前几何时空成分的集体行为产生的,在此基础上,这项工作将这些成分与引力子识别出来,并根据Schwarzschild-de Sitter场景的局部变量重写了它们有效的引力诱导相互作用。这个公式使整个新兴引力系统的引力子级模拟成为可能。第一个模拟场景证实,当引力子凝聚体插入平坦时空背景时,有效的引力子相互作用诱导时空曲率的出现。第二个模拟场景表明,自由落体可以被认为是向测地线轨迹微调的,在测地线轨迹中,测试质量所经历的引力子通量消失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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