Photonic Gravitational Interactions from a Quantum Point of View

J. L. Parra
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引用次数: 3

Abstract

A hypothesis explaining the diffraction and interference of light from a pure corpuscular point of view was published in 2018. The author developed the idea by a fortunate combination of intuition and statistics but failed to justify it theoretically. This vagueness can be amended by using relativistic invariants. Adapting Dirac’s equation to gravitational potentials acting over photons yields most of the properties of light. A complete characterization of the properties of light arriving from distant galaxies was performed by modeling the coherence of light. It was assumed that the coherence of light is generated by two orthogonal potentials. Here an idea explains the cosmological redshift data as is done by the combination of Big-Bang, acceleration, and deceleration trilogy.
从量子角度看光子引力相互作用
2018年发表了一项从纯微粒的角度解释光的衍射和干涉的假说。作者通过直觉和统计学的幸运结合发展了这一想法,但未能从理论上证明这一点。这种模糊性可以通过使用相对论不变量来修正。将狄拉克方程应用于作用于光子的引力势,可以产生光的大部分性质。通过对光的相干性进行建模,对来自遥远星系的光的性质进行了完整的表征。假设光的相干性是由两个正交的势产生的。在这里,一个想法解释了宇宙红移数据,这是由大爆炸、加速和减速三部曲的结合所完成的。
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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