引力决定费米子世代的数量:3

viXra Pub Date : 2020-07-01 DOI:10.31219/osf.io/h7x2m
Stephane H Maes
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引用次数: 19

摘要

在多重宇宙中,引力通过多重机制从纠缠中产生。结果,在纠缠的粒子之间出现了类似引力的效应,它们是真实的还是虚拟的。远距离无质量引力是由无质量虚粒子的纠缠产生的。大质量虚粒子的纠缠导致在非常小的尺度上产生巨大的引力贡献。多重折叠机制也导致了一个离散的时空,具有随机行走的分形结构和洛伦兹不变量的非交换几何,其中时空节点和粒子可以用微观黑洞来建模。所有这些都在大尺度上恢复了广义相对论,半经典模型在比通常预期更小的尺度上仍然有效。因此,引力可以加入到标准模型中。这有助于解决标准模型的几个开放问题。为什么每个家族似乎只有三代费米子,包括中微子,这一直是一个有趣的解释。在本文中,我们表明,当涉及费米子质量与希格斯玻色子相互作用的贡献时,在引力补充的标准模型拉格朗日方程中只定义了3种状态。因此,质量的分化意味着只有3代。这是另一个令人惊讶的结果,是在标准模型中加入了不可忽略的引力。虽然在多重宇宙的背景下显示,但结果可以扩展到任何引力在小尺度上不可忽略的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gravity Dictates the Number of Fermion Generations: 3
In a multi-fold universe, gravity emerges from Entanglement through the multi-fold mechanisms. As a result, gravity-like effects appear in between entangled particles that they be real or virtual. Long range, massless gravity results from entanglement of massless virtual particles. Entanglement of massive virtual particles leads to massive gravity contributions at very smalls scales. Multi-folds mechanisms also result into a spacetime that is discrete, with a random walk fractal structure and non-commutative geometry that is Lorentz invariant and where spacetime nodes and particles can be modeled with microscopic black holes. All these recover General relativity at large scales and semi-classical model remain valid till smaller scale than usually expected. Gravity can therefore be added to the Standard Model. This can contribute to resolving several open issues with the Standard Model. It has always been intriguing to explain why there seems to be only 3 generations of Fermions, for each family, including neutrinos. In this paper, we show that there are only 3 regimes defined in the Standard Model Lagrangian complemented with gravity, when it comes to the contribution of fermion masses interacting with Higgs bosons. As a result, differentiations of mass implies only 3 generations. It is another surprising result, from adding non-negligible gravity to the Standard model. While shown in the context of a multi-fold universe, the result can be extended to any model where gravity is not negligible at small scales.
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