光的宇宙学转换:光电效应的引力模拟

L. Nash
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引用次数: 0

摘要

众所周知,非常遥远的星系,就像我们自己的星系一样,显示出非常高的后退速度,其大小随着距离的增加而增加。因此,在本研究中,通过用重力量子假设取代经典的重力(波)理论来研究光电效应的引力模拟。通过比较光子穿越普朗克时空点阵模型的结果与来自遥远Ia型超新星的光的宇宙学红移和时间膨胀效应的观测数据,评估了这一概念对遥远星系运动的意义。光引力效应并不一定会使标准的大爆炸宇宙学失效,事实上,它可能会为其关于宇宙演化和年龄的结论增加一层保真度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Cosmological Transformation of Light: A Gravitational Analogue of the Photoelectric Effect
It is known that very distant galaxies, much like our own, show remarkably high receding velocities, the magnitude of which increases with distance. Therefore, in this study, a gravitational analog of the photoelectric effect was investigated by replacing the classical (wave) theory of gravity with a gravity quanta hypothesis. The significance of this concept regarding the motion of distant galaxies is evaluated by comparing the results obtained for a photon traveling through a Planck lattice model of spacetime to the observational data for both the cosmological redshift and time dilation effects of light from distant Type Ia supernovae. The photogravity effect does not necessarily invalidate the standard big bang cosmology and may in fact add a layer of fidelity to its conclusions concerning the evolution and age of the universe.
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