Dark Matter Particles

Vladimir S. Netchitailo
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引用次数: 4

Abstract

Researchers have been able to infer the existence of Dark Matter (DM) only from the gravitational effect. DM seems to outweigh visible matter roughly six to one, making up about 27% of the universe. Here’s a sobering fact: The matter we know and that makes up all stars and galaxies only accounts for 5% of the content of universe! But what is DM? [1]. Many experiments to detect and study Dark Matter Particles (DMPs) directly are being actively undertaken, but none have yet succeeded. Indirect detection experiments search for the products of the annihilation or decay of DMPs in outer space [2]. In this paper, we discuss main ideas of the Hypersphere World-Universe Model (WUM) and introduce an additional new DMP “XION” (boson) with the rest energy 10.6 μeV that is an analog of Axion. On June 28, 2023, it was announced the existence of Cosmic Gravitational Background. In frames of WUM, we give an explanation of this discovery based on the analysis of “Gravitoplasma” composed of objects with Planck mass, which were created as the result of Weak Interaction between XIONs and other particles in the Medium.
暗物质粒子
研究人员只能从引力效应推断暗物质(DM)的存在。暗物质似乎是可见物质的六倍,约占宇宙的27%。这是一个发人深省的事实:我们所知道的构成所有恒星和星系的物质只占宇宙含量的5% !但是DM是什么呢?[1]. 许多直接探测和研究暗物质粒子(dmp)的实验正在积极进行,但尚未取得成功。间接探测实验在外层空间寻找DMPs湮灭或衰变的产物[2]。本文讨论了超球世界-宇宙模型(WUM)的主要思想,并引入了一种新的DMP“XION”(玻色子),其静止能量为10.6 μeV,类似于轴子。2023年6月28日,宇宙引力背景被宣布存在。在WUM的框架中,我们基于对“引力等离子体”的分析给出了这一发现的解释,引力等离子体是由具有普朗克质量的物体组成的,它是由XIONs与介质中其他粒子弱相互作用产生的。
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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