研究电子二象性的新方法

Sultan Muhammad, M. Omama
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引用次数: 1

摘要

在杨氏双缝实验中,我破译了电子的量子二象性。假设旨在解码被敲电子与观察者的相互作用,以及干涉图样的微扰消失。假设是基于玻尔的原子模型和电子量子化的理论概念。该假说提出了一个类似于希格场的通用场,利用对产生现象,通过与被撞电子的相互作用来保存电子的势能。该假设提供了全面的理论和数学解决方案,可能在更广泛的背景下,通过引入通用场(SM场)来阐述为什么电子在杨氏双缝实验中表现出对偶性和观察者的作用。讨论了光子与被敲电子之间的相互作用。利用薛定谔波动方程(SWE),推导了一个数学模型,用来解释观察者的作用,并利用SM场作为补充来解释电子的对偶性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Approach to Duality of Electron
I decipher quantum duality of electron in Young’s Double-Slit experiment. Hypothesis intends to decode interaction of knocked-electrons with observer, and perturbative disappearance of interference pattern. Hypothesis is based on Bohr’s Atomic Model, and the theoretical concepts of Quantization of electron. The hypothesis proposes a universal field, similar to Higg’s field, that conserves the potential energy of electron through interaction with knocked-electrons, utilizing phenomena of pair-production. The hypothesis provides comprehensive theoretical and mathematical solutions to possibly elaborate, in a broader context, why electrons exhibit duality and the role of observer in Young’s Double-Slit experiment through introduction of universal field (SM Field). The interactions between photon and knocked-electrons have been discussed. Through using Schrodinger wave equation (SWE), a mathematical model has been derived, that is used to explain role of the observer, and duality of electron by using SM field as a supplement.
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