The magnetic moment of elementary particles is studied by space vector and space curvature

Haitao Gao
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引用次数: 1

Abstract

This paper reaffirms the basic agreement of the material space theory: (1) Space is a physical existence; (2) "Force" is the action to space, and "force" is equal to the reciprocal value of "time"; in the absence of special description, "force" is the reciprocal of time; (3) There is a steady velocity field in three-dimensional space, whose intensity is the speed of light C; (4) Mass is a property of space produced by force acting on space, there are one-dimensional to four-dimensional masses in the universe, which correspond to velocities, light, electricity and gravitational masses; (5) The "causality principle" of physical changes; (6) The "simplicity principle" of physical changes; (7) The micro world and the macro world follow the same legal system. In this paper, magnetic field and electric field are defined respectively from space vector and space curvature. Studied the properties of magnetic and electric fields. This paper studies the properties of magnetic and electric fields, and in the field of micro electromagnetic interaction are described. Based on the basic principle of the material space theory, this paper proposes a method to calculate the spin magnetic moment of electrons and protons by using the magnetic field strength, and calculates the spin magnetic moment of protons and electrons under specific parameters. The calculated spin magnetic moment of the proton is 4.04035412*10-26J/T, it is close to the reported value of 1.41049964*10-26J/T, the spin magnetic moment of electrons is 6.69044591*10-27 J/T, which is far from the reference value of 9.28674762*10-24J/T, However, if the radius of the electron charge is set as 1.553794368*10-15m, the spin magnetic moment of the electron will be consistent with the reported value in the literature. The research results show that when the magnetic moment of elementary particles is known, the spatial structure of the charge of elementary particles can be calculated by using the method in this paper. This also provides an experimental method to verify the correctness of the proposed method. Key words: Space vector, space curvature, magnetic moment, spin, electron, proton.
利用空间矢量和空间曲率研究了基本粒子的磁矩
本文重申了物质空间理论的基本一致性:(1)空间是一种物理存在;(2)“力”是对空间的作用,“力”等于“时间”的倒数;在没有特别描述的情况下,“力”是时间的倒数;(3)三维空间中存在一个稳定的速度场,其强度为光速C;(4)质量是作用于空间的力所产生的空间性质,宇宙中有一维到四维的质量,分别对应于速度、光、电和引力质量;(5)物理变化的“因果原理”;(6)物理变化的“简单性原则”;(7)微观世界和宏观世界遵循同一法律体系。本文分别从空间矢量和空间曲率来定义磁场和电场。研究了磁场和电场的性质。本文研究了磁场和电场的性质,并对电磁场中的微相互作用进行了描述。本文根据物质空间理论的基本原理,提出了一种利用磁场强度计算电子和质子自旋磁矩的方法,并计算了特定参数下质子和电子的自旋磁矩。计算得到的质子自旋磁矩为4.04035412*10-26J/T,与文献报道值1.41049964*10-26J/T较为接近,电子自旋磁矩为6.69044591*10-27 J/T,与文献报道值9.28674762*10-24J/T相去甚远,但若将电子电荷半径设为1.553794368*10-15m,则电子自旋磁矩与文献报道值一致。研究结果表明,当基本粒子的磁矩已知时,可以用本文方法计算基本粒子电荷的空间结构。为验证所提方法的正确性提供了一种实验方法。关键词:空间矢量,空间曲率,磁矩,自旋,电子,质子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Physical Sciences
International Journal of Physical Sciences 综合性期刊-综合性期刊
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发文量
4
审稿时长
24 months
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