Agency of Life, Entropic Gravity and Phenomena Attributed to “Dark Matter”

Angus M. McCoss
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引用次数: 5

Abstract

Entropic gravity theories propose that spacetime and gravity emerge from quantum information entanglements. Vacuum spacetime emerges in the ground state and its area law for entanglement entropy is due to short-range entanglement of neighbouring microscopic degrees of freedom. Matter changes the entanglement entropy in this vacuum and leads to Einstein gravity. Additionally, in a positive dark energy de Sitter Universe, where each conscious agent has a cosmological horizon, a volume law contribution to entanglement entropy is divided evenly over the same degrees of freedom and is caused by long-range entanglement. I propose these complementary shortrange and long-range entanglement contributions form a nested small-world network which provides the topological quantum computing foundation for relativistic multi-agent correlations which weave together a universal physics of Nature. The volume law contribution to entanglement entropy surpasses the area law for entanglement entropy at an agent’s cosmological horizon. Verlinde interprets gravitational “dark matter” phenomena as polymer-like memory effects caused by the volume contribution to the entanglement entropy. I propose these phenomena are instead multi-agent quantum computational consensus effects due to an equivalent volume contribution to the entanglement entropy. Life is correlated with its environment. Phenomena attributed to unseen “dark matter” particles are proposed here to be founded upon nested observer halos, “spheres of influence or correlation”, caused by the consensus Agency of Life. Suitable cosmological conditions for earliest Life in the Universe occurred some 10 billion years ago and older galaxies do not exhibit “dark matter” phenomena. Also, galactic rotation curves flatten beyond their high-radiation centres, due to astrobiology and the Agency of Life living in outlying low-radiation habitable zones. Where baryonic matter is in motion, then the Agency of Life stores its baryonic matter-lagging memory in skewed trails of apparent “dark matter” phenomena in spacetime.
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生命代理、熵引力与“暗物质”现象
熵引力理论认为时空和引力是由量子信息纠缠产生的。真空时空出现在基态,其纠缠熵的面积定律是由于相邻微观自由度的短程纠缠。物质在这个真空中改变了纠缠熵,导致了爱因斯坦引力。此外,在正暗能量德西特宇宙中,每个有意识的主体都有一个宇宙学视界,在相同的自由度上,体积定律对纠缠熵的贡献是均匀分布的,这是由长程纠缠引起的。我提出,这些互补的短程和长程纠缠贡献形成了一个嵌套的小世界网络,它为相对论性多智能体关联提供了拓扑量子计算基础,这些关联将自然界的普遍物理学编织在一起。在主体的宇宙学视界中,体积定律对纠缠熵的贡献超过了面积定律。Verlinde将引力“暗物质”现象解释为由纠缠熵的体积贡献引起的类似聚合物的记忆效应。我认为这些现象是多智能体量子计算一致性效应,这是由于对纠缠熵的等效体积贡献。生命与环境息息相关。这里提出,归因于看不见的“暗物质”粒子的现象是建立在嵌套的观测者光环上的,即“影响或关联范围”,由一致的生命机构引起。宇宙中最早生命的合适宇宙学条件发生在大约100亿年前,较老的星系不会表现出“暗物质”现象。此外,由于天体生物学和生命机构生活在偏远的低辐射宜居带,星系自转曲线在高辐射中心之外变平。在重子物质运动的地方,生命机构将其重子物质滞后记忆存储在时空中明显的“暗物质”现象的扭曲轨迹中。
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