The Neutron and Dark Matter in the Standard Model of Particle Physics

L. M. Lugo, E. C. Alarcón
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引用次数: 0

Abstract

The existence of the neutron, originally postulated to justify the stability of the nucleus, is very similar to the postulation of Dark Matter to give stability to galaxies and galaxy clusters. However, the existence of the neutron has been proven as an important part of the nucleus that is linked within its integral structure in the Standard Model of Particle Physics. The Standard Model that began with the electron and the proton, currently, with more than one hundred particles, shows in some parts, cracks that induce to reconsider the veracity of the theories and models. Here it is established that all theories are to some extent false and therefore, so will any model, which is always a specific part of the theory. Also, like several other things, by means of a mathematical calculation, it is clarified why, it has not been possible to incorporate the Dark Matter within the Standard Model. Furthermore, it is reliably demonstrated that the introduction of the Dark matter postulate is super-fluous and that the high speeds of stellar rotation determined experimentally are analytically explained with the stellar dynamics described here.
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粒子物理标准模型中的中子和暗物质
中子的存在,最初是为了证明原子核的稳定性,与暗物质的存在非常相似,它给星系和星系团带来了稳定性。然而,在粒子物理标准模型中,中子的存在已经被证明是原子核的一个重要组成部分,它与原子核的整体结构紧密相连。从电子和质子开始的标准模型,目前有一百多个粒子,在某些部分显示出裂缝,促使人们重新考虑理论和模型的准确性。这里可以确定的是,所有的理论都在某种程度上是错误的,因此,任何模型都是错误的,它总是理论的一个特定部分。此外,就像其他一些事情一样,通过数学计算,它澄清了为什么不可能将暗物质纳入标准模型。此外,它可靠地证明了暗物质假设的引入是多余的,并且实验确定的恒星高速旋转可以用这里描述的恒星动力学来解析解释。
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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