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arXiv:1604.01638 (physics)
[提交于 2016年4月6日 ]

标题: Stückelberg-Horwitz-Piron电动力学中的光速和质量稳定性

标题: Speeds of light and mass stability in Stueckelberg-Horwitz-Piron electrodynamics

Authors:Martin Land
摘要: It is well-known that the 5D gauge structure of Stueckelberg-Horwitz-Piron (SHP) electrodynamics permits the exchange of mass between particles and the fields induced by their motion, even at the classical level. This phenomenon presents two closely related problems: (1) What accounts for the stability of the measured masses of the known particles? (2) Under what circumstances can real particles evolve sufficiently off-shell to account for mass changing phenomena such as flavor-changing neutrino interactions and low energy nuclear reactions? To approach these questions, we introduce a constant $c_5$ associated with the invariant time $\tau$, in analogy with the constant $c$ that associates a unit of length with intervals of time $t$ in standard relativity. It follows that electromagnetic mass exchange can be a small effect, in proportion to $c_5 / c$. We show that this structure permits a classical self-interaction that tends to restore on-shell propagation. Finally we propose a model in which a particle evolving through a complex charged environment can acquire a significant mass shift for a short time.
摘要: It is well-known that the 5D gauge structure of Stueckelberg-Horwitz-Piron (SHP) electrodynamics permits the exchange of mass between particles and the fields induced by their motion, even at the classical level. This phenomenon presents two closely related problems: (1) What accounts for the stability of the measured masses of the known particles? (2) Under what circumstances can real particles evolve sufficiently off-shell to account for mass changing phenomena such as flavor-changing neutrino interactions and low energy nuclear reactions? To approach these questions, we introduce a constant $c_5$ associated with the invariant time $\tau$, in analogy with the constant $c$ that associates a unit of length with intervals of time $t$ in standard relativity. It follows that electromagnetic mass exchange can be a small effect, in proportion to $c_5 / c$. We show that this structure permits a classical self-interaction that tends to restore on-shell propagation. Finally we propose a model in which a particle evolving through a complex charged environment can acquire a significant mass shift for a short time.
主题: 一般物理 (physics.gen-ph) ; 高能物理 - 理论 (hep-th)
引用方式: arXiv:1604.01638 [physics.gen-ph]
  (或者 arXiv:1604.01638v1 [physics.gen-ph] 对于此版本)
  https://doi.org/10.48550/arXiv.1604.01638
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来自: Martin Land [查看电子邮件]
[v1] 星期三, 2016 年 4 月 6 日 14:19:14 UTC (23 KB)
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