粒子的几何模型(质量的起源和电子自旋)

Giovanni Guido
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引用次数: 0

摘要

物理学的几何化过程,除了广义相对论(GR)中的空间和时间,甚至包括基本粒子。我们的出发点是一个关于粒子的原始假设的公式,与标准模型(SM)的基本假设相兼容:一个大质量粒子是一组弹性耦合量子振荡器的几何结构,它沿着一条非质量基场(脉冲本征态)的直线传播。我们证明了与代表电子的几何形状相关的振荡传播方程遵循狄拉克波动方程传播。因此,人们为大质量粒子的几何模型(GMP)提供了基础,该模型将解释质量、自旋和电子磁矩的物理起源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Geometric Model of Particles (The Origin of Mass and the Electron Spin)
The geometrization process of physics could involve, in addition to space and time in General Relativity (GR), even elementary particles. Our starting point is the formulation of an original hypothesis about particles, compatible with the basic assumptions of the Standard Model (SM): a massive particle is a geometric structure of a set of elastically coupled quantum oscillators that propagates along a line of a non-massive base field (in impulse eigenstate). We show that the propagation equation of an oscillation associated with the geometric shape representing an electron propagates following Dirac’s wave equation. Thus, one gives a foundation to a geometric model of massive particles (GMP) which would explain the physical origin of the mass, spin, and the magnetic moment of the electron.
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