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Supersymmetry of In-group and 'Out-group' Particles and Some Strange Phenomena

机译:组内和“组外”粒子的超对称性以及一些奇怪的现象

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摘要

The symmetry of the in-group particles, which are of three-generation fermions, and the "out-group" ones, which are not admitted by three-generation fermions, is discussed. It was found that the "out-group" antiparticles of Bose type, which came into being because of CP (charge Conjugation-Parity conservation) violation in the early universe and became heavier due to the phase transformation from low temperature to high temperature, are the supersymmetric companions of the in-group particles of Fermi type. The ratio of the number density of photons to that of protons calculated with Planck distribution method is about 0.61×1010, which is close to the observed value (about 1010) available in literature. A theoretical analysis of the structure of a photon suggests that the photon has a quark-gluon structure, which is consistent with the experimental result reported in literature. As the lightest particle in the supersymmetric companions, the calculated mass of a neutralino is 320 GeV. The so-called "vast area of desert" in mass scale appears to be the supersymmetry area of the three-generation particles, and "neutralinos" are the source of the moving of galaxies and the dark matter of non-baryons.
机译:讨论了三代费米子的组内粒子和三代费米子不容许的“外”粒子的对称性。发现在早期宇宙中由于CP(电荷共轭​​-守恒守恒)的违背而产生并由于从低温到高温的相变而变得较重的Bose型“外群”反粒子是费米型团内粒子的超对称伴侣。用普朗克分布法计算的光子数密度与质子数密度之比约为0.61×1010,接近文献中的观测值(约1010)。对光子结构的理论分析表明,光子具有夸克-胶子结构,这与文献报道的实验结果一致。作为超对称同伴中最轻的粒子,中性分子的计算质量为320 GeV。大规模的所谓“沙漠广大区域”似乎是三代粒子的超对称区域,“中性粒子”是星系运动和非重子的暗物质的来源。

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