利用核聚变模型证明关于时空扭曲的假设

Y. Matsuki, P. Bidyuk
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引用次数: 0

摘要

该研究致力于现代主题:分析导致广义相对论导致的时空坐标扭曲的条件。本研究的主要目的是利用核聚变模型来证明关于时空扭曲的假设。为此,模拟仪器被用来模拟运动的质子撞击氢原子的电子。模拟的方法是基于计算质子与目标电子的弹性散射和电荷交换的概率。扭曲是由时间和空间的函数来建模的,扭曲的时间是对数的,扭曲的空间是指数的。这种几何结构用电子波函数Schrödinger方程来描述。然后电荷交换的概率被计算为这个波函数的平方系数在几何图形的负侧除以方程所有项的平方系数的总和。因此,计算结果表明,在时间和空间不扭曲的情况下,电荷交换的计算概率很高。然而,当时间和空间被扭曲时,弹性散射减小,弹性散射的概率增大。所得结果还表明,在核聚变过程中,当时间和空间发生畸变时,氢原子中电子的离散能级会发生位移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The proof of hypothesis regarding distortion of time and space using the nuclear fusion model
The study is dedicated to modern topic: the analysis of conditions that lead to distortion of the time and space coordinates which results from the general theory of relativity. The main goal of this research is to prove the hypothesis regarding distortion of time and space using nuclear fusion model. For this purpose the simulation instrument is used to imitate a moving proton that hits an electron of a hydrogen atom. The methodology of simulation is based upon calculation of the probabilities of elastic scattering and charge exchange of a proton with a target electron. The distortion is modeled by the functions that relate time and space logarithmically for distorted time and exponentially for distorted space. Such geometry construction is described by the Schrödinger equation using the electron wave function. Then the probability of charge exchange is calculated as the squared coefficient of this wave function in the negative side of the geometry that is divided by the sum of the squared coefficients of all the terms of the equation. Thus, the calculation result shows that the calculated probability of the charge exchange is high when the time and space are not distorted. However, when time and space are distorted it decreases, and the probability of elastic scattering is growing. The achieved result also indicates that the discrete energy levels of electrons in hydrogen atoms shift when the distortion of time and space occurs in the nuclear fusion.
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