About Worlds inside a Black Hole and Peculiarities of the Formation of Exotic Space Objects

Avas Khugaev, Eugeniya Bibaeva
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Abstract

The article puts forward a hypothesis about the possibility of the existence of our Universe inside a supermassive black hole, analyzes the basic assumptions and verifiable physical consequences. The transformation of the Primary Particles obtained from the decay of Borromeo rings into binary and ternary structures is considered separately, taking into account how the percentages between Dark Matter, Dark Energy and Baryonic matter are formed. A system of kinetic equations has been compiled, which makes it possible to develop a theoretical approach to obtain these values depending on the geometric and physical characteristics of interacting particles. The possibility and necessity of the existence of a Primary Relic of Primary Particles are substantiated. The nature of the voids and the analytical solution of the Einstein equations obtained from the generalized Papapetrou solution, which leads to the existence of strings with an arbitrary distribution of matter along the string and with lengths comparable to the size of the Universe, are considered. In the case of a string of finite size and constant density, this solution leads to the well-known Weyl solution. An assumption is put forward about the existence of an Einstein-Rosen type transition, when the dimensions of the white and black holes at the ends of this transition have different dimensions.
关于黑洞内的世界和奇异空间物体形成的特殊性
本文提出了超大质量黑洞中宇宙存在可能性的假设,分析了基本假设和可验证的物理结果。考虑到暗物质、暗能量和重子物质之间的百分比是如何形成的,分别考虑了从Borromeo环衰变中获得的初级粒子向二元和三元结构的转变。一个动力学方程系统已经编制,这使得有可能发展一种理论方法来获得这些值取决于相互作用的粒子的几何和物理特性。论证了原初粒子遗迹存在的可能性和必要性。本文考虑了真空的性质和由广义Papapetrou解得到的爱因斯坦方程的解析解,该解导致弦的存在,弦上的物质分布是任意的,其长度与宇宙的大小相当。在有限大小和恒定密度的弦的情况下,这种解决方案导致著名的Weyl解决方案。提出了爱因斯坦-罗森型跃迁存在的假设,当跃迁两端的白黑洞和黑洞的维数不同时。
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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