Clifford Algebras, Hypercomplex Numbers and Nonlinear Equations in Physics

Ying-Qiu Gu
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引用次数: 1

Abstract

Hypercomplex number systems are vector algebras with the definition of multiplication and division of vectors, satisfying the associativity and distributive law. In this paper, some new types of hypercomplex numbers and their fundamental properties are introduced, the Clifford algebra formalisms of hydrodynamics and gauge field equations are established, and some novel consistent conditions helpful to understand the properties of solutions to nonlinear physical equations are derived. The coordinate transformation and covariant derivatives of hypercomplex numbers are also discussed. The basis elements of the hypercomplex numbers have group-like properties and satisfy a structure equation $\A^2=n\A$. The hypercomplex number system integrates the advantages of algebra, geometry and analysis, and provides a unified, standard and elegant language and tool for scientific theories and engineering technology, so it is easy to learn and use. The description of mathematical, physical and engineering problems by hypercomplex numbers is of neat formalism, symmetric structure and standard derivation, which is especially suitable for the efficient processing of the higher dimensional complicated systems.
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物理学中的Clifford代数、超复数和非线性方程
超复数系统是具有向量乘法和除法定义的向量代数,满足结合律和分配律。本文介绍了几种新型的超复数及其基本性质,建立了流体力学和规范场方程的Clifford代数形式,导出了一些有助于理解非线性物理方程解的性质的新的一致性条件。讨论了超复数的坐标变换和协变导数。超复数的基元具有类群性质,满足结构方程$\ a ^2=n\ a $。超复数系统综合了代数、几何和分析的优点,为科学理论和工程技术提供了统一、标准和优雅的语言和工具,因此易于学习和使用。超复数对数学、物理和工程问题的描述具有整洁的形式、对称的结构和标准的推导,特别适用于高维复杂系统的高效处理。
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来源期刊
Geometry, Integrability and Quantization
Geometry, Integrability and Quantization Mathematics-Mathematical Physics
CiteScore
0.70
自引率
0.00%
发文量
4
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