宇宙黑洞作为相对论量子力学DIRAC方程的解

Wim Vegt
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引用次数: 0

摘要

对许多物理学家来说,爱因斯坦的广义相对论是物理学的顶峰。一个全新的概念,基于灵活的时空连续体。对时空起源的全新独到见解。但是现在的物理学需要的不仅仅是一个关于空间和时间的基本理论。“黑洞的量子力学模型”的数学基础是基于10维时空连续体。这篇文章是在一个更容易理解的四维时空连续体中的十维时空连续体的投影中写的。因此,这个理论不会从“爱因斯坦著名的场方程”开始,而是从物理学中一个非常基本的概念开始。艾萨克·牛顿第三定律作为经典力学和量子力学的基础。为了使“黑洞的量子力学模型”的理论尽可能容易理解,本文从对该理论的简短理解开始。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Cosmic Black Hole as a Solution of the Relativistic Quantum Mechanical DIRAC Equation
For many physicists, Albert Einstein’s Theory of General Relativity is the top of Physics. A whole new concept, based on a flexible Space-Time Continuum. A wonderful New and Original insight in the Origins of Space and Time. But nowadays physics requires more than a fundamental theory about Space and Time. The Mathematical foundation for a “Quantum Mechanical Model of the Black Hole” is based on a 10-dimensional Space-Time Continuum.  This article has been written in projections of a 10-Dimensional Space-Time Continuum within an easier to understand 4-Dimensional Space-Time Continuum. For that reason, this theory will not start with “Einstein’s famous Field Equations”,  but the start will be at a very fundamental concept in Physics. Isaac Newton’s 3rd law as a fundament in Classical-  and Quantum Mechanics. To make the theory of the “Quantum Mechanical Model of the Black Hole” as much understandable as possible, this article starts with a short comprehension of the theory.
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