Hypersphere World-Universe Model: Centre of Our Galaxy

Vladimir S. Netchitailo
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引用次数: 9

Abstract

In 1937, Paul Dirac proposed: the Large Number Hypothesis and the Hypothesis of the variable gravitational “constant”; and later added the notion of continuous creation of Matter in the World. The developed Hypersphere World-Universe Model (WUM) follows these ideas, albeit introducing a different mechanism of matter creation. In this paper, we show that WUM is a natural continuation of Classical Physics, and it can already serve as a basis for a New Cosmology proposed by Paul Dirac. In 2013, WUM predicted the values of the following Cosmological parameters: gravitational, concentration of intergalactic plasma, and the minimum energy of photons, which were experimentally confirmed in 2015-2018. “The Discovery of a Supermassive Compact Object at the Centre of Our Galaxy” (Nobel Prize in Physics 2020) made by Prof. R. Genzel and A. Ghez is a confirmation of one of the most important predictions of WUM in 2013: “Macroobjects of the World have cores made up of the discussed DM particles. Other particles, including DM and baryonic matter, form shells surrounding the cores”.
超球世界-宇宙模型:银河系中心
1937年,保罗·狄拉克提出:大数假说和变引力“常数”假说;后来又加入了物质在世界上不断创造的概念。发展起来的超球世界-宇宙模型(Hypersphere World-Universe Model, WUM)遵循了这些观点,尽管它引入了一种不同的物质创造机制。在本文中,我们证明了WUM是经典物理学的自然延续,它已经可以作为保罗·狄拉克提出的新宇宙学的基础。2013年,WUM预测了以下宇宙学参数的值:引力、星系间等离子体的浓度和光子的最小能量,这些参数在2015-2018年得到了实验证实。R. Genzel教授和a . Ghez教授的“在我们银河系中心发现一个超大质量致密物体”(2020年诺贝尔物理学奖)证实了WUM在2013年最重要的预测之一:“世界的宏观物体由讨论的DM粒子组成。其他粒子,包括DM和重子物质,在核心周围形成壳层。
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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