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Two incompatible types of invariants in the octonion spaces
International Journal of Geometric Methods in Modern Physics ( IF 1.8 ) Pub Date : 2022-06-23 , DOI: 10.1142/s0219887822501614
Zi-Hua Weng 1, 2
Affiliation  

This paper aims to study some invariants and conservation laws relevant to electromagnetic and gravitational fields by means of the rotational transformations of octonion coordinate systems. The scholars utilize the octonions to analyze the electromagnetic and gravitational fields simultaneously, including the octonion field potential, field strength, field source, linear momentum, angular momentum, torque and force. When the octonion coordinate system transforms rotationally, the vector part of one octonion may alter, while the scalar part of the octonion will remain unchanged. This property allows one to deduce a few invariants, such as the scalar part of octonion radius vector, speed of light, and norm of octonion radius vector. These invariants are the basic postulates for the Galilean transformation and Lorentz transformation. Furthermore, from the rotation transform of octonion coordinate systems, it is capable of deducing several invariants, including the mass, energy and power relevant to gravitational fields, in one octonion space 𝕆. And the term relevant to the electric charge will transform with the rotation of coordinate systems. In another octonion space 𝕆u, it is capable of inferring a few invariants, including the electric charge related to electromagnetic fields. And the terms relevant to the mass and energy will vary with the rotation of octonion coordinate systems. So, the invariants are divided into two different groups. In particular, the mass conservation law and energy conservation law can be effective simultaneously. But the charge conservation law and mass conservation law are unable to be valid simultaneously, in the strict sense. It is beneficial to further understand the laws of conservation.



中文翻译:

八元空间中两种不相容的不变量类型

本文旨在通过八元坐标系的旋转变换研究电磁场和引力场的一些不变量和守恒定律。学者们利用八元数同时分析电磁场和引力场,包括八元数的场势、场强、场源、线动量、角动量、力矩和力。当八元数坐标系进行旋转变换时,一个八元数的矢量部分可能会发生变化,而八元数的标量部分将保持不变。这一性质允许我们推导出一些不变量,例如八元半径矢量的标量部分、光速和八元半径矢量的范数。这些不变量是伽利略变换和洛伦兹变换的基本假设。此外,𝕆. 与电荷有关的项会随着坐标系的旋转而变化。在另一个八元空间𝕆,它能够推断出一些不变量,包括与电磁场相关的电荷。并且与质量和能量相关的项会随着八元坐标系的旋转而变化。因此,不变量分为两个不同的组。特别是质量守恒定律和能量守恒定律可以同时有效。但严格意义上的电荷守恒定律和质量守恒定律不能同时有效。有利于进一步了解守恒定律。

更新日期:2022-06-23
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