三元二次元空间中的量子场和四种相互作用

Zi-Hua Weng
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引用次数: 0

摘要

J. C. 麦克斯韦首次应用四元数代数研究电磁场的物理特性。麦克斯韦首先将四元数代数应用于研究电磁场的物理特性,并启发了后来的一些学者,将四元数、八元数、三元数和三角数引入到研究电磁场、引力场、弱核场、强核场、量子力学、规量场和弯曲空间等方面。三元二次代数能够讨论四种相互作用的物理量,包括场势、场强、场源、线动量、角动量、力矩和力。在用三元二次方程代数描述的场理论中,弱核场由三种基本场组成。这三种与弱核场相关的基本场可以共同描述弱核场的物理特性。这与弱电理论的结论是一致的。与此同时,强核场由三类基本场组成。与强核场相关的这三种基本场可以共同研究强核场的物理性质。这与夸克理论的推导不谋而合。根据三元二次方的性质,可以推导出与量规场相关的杨-米尔斯方程。这意味着电磁场占据了水元子空间。弱核场占据三个相互独立的四元数空间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gauge fields and four interactions in the trigintaduonion spaces
The paper aims to apply the trigintaduonion spaces to explore the physical properties of four interactions simultaneously, including the electromagnetic fields, gravitational fields, weak nuclear fields, and strong nuclear fields. J. C. Maxwell first applied the algebra of quaternions to study the physical properties of electromagnetic fields. It inspired some subsequent scholars to introduce the quaternions, octonions, sedenions, and trigintaduonions to research the electromagnetic fields, gravitational fields, weak nuclear fields, strong nuclear fields, quantum mechanics, gauge fields, and curved spaces and so forth. The algebra of trigintaduonions is able to discuss the physical quantities of four interactions, including the field potential, field strength, field source, linear momentum, angular momentum, torque, and force. In the field theories described with the algebra of trigintaduonions, the weak nuclear field is composed of three types of fundamental fields. These three fundamental fields, related to weak nuclear fields, can describe the physical properties of weak nuclear fields collectively. This is consistent with the conclusion of the electroweak theory. Meanwhile the strong nuclear field consists of three types of fundamental fields. These three fundamental fields relevant to strong nuclear fields may investigate the physical properties of strong nuclear fields mutually. It is coincident with the deduction of quark theory. According to the properties of trigintaduonions, one can deduce the Yang-Mills equation related to the gauge fields. It means that the electromagnetic field occupies a quaternion space. The gravitational field owns one different quaternion space. The weak nuclear fields occupy three mutually independent quaternion spaces. The properties of weak nuclear fields are different from those of electromagnetic fields or gravitational fields.
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