Remarks to Gravitation Theories

T. Kala
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引用次数: 1

Abstract

: Gravitation is one of the most significant phenomena which attract the attention of humankind for ages. There are two most influential theories of the Gravitation at the current time being (summer 2019), namely, the Isaac Newton’s Theory of Gravitation and Albert Einstein’s General Theory of Relativity, which includes an explanation of the gravitation. However, both of them are incommensurate — so far — with plenty of quantum theories of the World. In this contribution, there is outlined a strategy for unifying the current approaches to the Gravitation. Namely, that the gravitation/gravity should be considered as a consequence of interaction — a “pinning effect” — of the Spacetime with the non-integral spin of the Fermions, to saturate/add/ the missing part of them. It might induce a deformation/curvature of the Spacetime and known effects on moving material objects, as well as electromagnetic radiation, including light, and other types of radiation, and properties/parameters of transformations of fields, described in the General Theory of Relativity and another. It is Gravitation which modifies/creates Spacetime curvature and its features and not vice versa.
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对引力理论的注解
万有引力是多年来吸引人类注意力的最重要的现象之一。目前(2019年夏季)有两个最具影响力的引力理论,即艾萨克·牛顿的引力理论和阿尔伯特·爱因斯坦的广义相对论,其中包括对引力的解释。然而,到目前为止,这两种理论都与世界上的大量量子理论不相称。在这篇文章中,概述了一种统一当前引力方法的策略。也就是说,引力应该被认为是时空与费米子的非积分自旋相互作用的结果——一种“钉住效应”,以饱和/增加/减少它们的部分。它可能会引起时空的变形/曲率和已知的对移动物质物体的影响,以及电磁辐射,包括光,和其他类型的辐射,以及广义相对论和其他理论中描述的场变换的性质/参数。是万有引力改变/创造了时空曲率及其特征,而不是相反。
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