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A new finding relating subatomic particles' mass to the square of the magnetic flux quantum provides a novel interpretation of the mass and a novel Wave Function interpretation.

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Mendeley Data2026-04-18 收录
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The motivation for investigating the issues presented in this article stemmed from a need to understand better the relationship in long-established physics formulas and extract the information they provided using conventional methods. Based on the definition of magnetic flux quantization, which is based on a combination of fundamental physical constants, the Planck constant, and the particle’s elementary charge, this work explores the results that arise when this equation is combined with the equation of the Bohr-level electrostatic force acting on the electron, which leads to a new mathematical relationship between the combined expressions. The new relationship yields novel theoretical findings related to the known universal constants. Following this insight, the formalism developed in this paper indicates that the mass of the electron and other subatomic particles is associated with the magnitude of the square of the magnetic flux quantum, which makes up the particle. This conclusion is not as strange as it may seem, as the square of the magnetic flux quantum appears in the context of magnetic energy in a current loop and, according to Einstein’s special theory of relativity, energy is equivalent to mass. Another aspect described at the end of this paper demonstrates the connection between the square of the magnetic flux quantum through the Bohr radius and the significance of the wave function in the atom. The theoretical results are in full accordance with experimental results published by NIST CODATA 2018 that I’ve used, which validates the existence of the relationship.

本文所探讨的研究议题,其动机源于对长期确立的物理学公式间内在关联的深化理解需求,以及通过常规方法提取其中蕴含信息的实践需要。本研究以由基础物理常数(普朗克常数(Planck constant)与粒子元电荷(elementary charge))组合定义的磁通量量子化(magnetic flux quantization)为基础,将该公式与作用于电子的玻尔能级静电力方程相结合,探究组合后所产生的结果,最终得到两个表达式间的全新数学关联。这一全新关联推导出了与已知普适常数相关的新颖理论发现。基于这一理论洞见,本文构建的形式体系表明,电子及其他亚原子粒子的质量,与构成该粒子的磁通量量子平方的幅值存在关联。这一结论看似出人意料,实则合乎逻辑:磁通量量子的平方曾出现在电流环的磁能相关研究场景中,而根据爱因斯坦狭义相对论(special theory of relativity),能量与质量等价。本文末尾阐述的另一维度则揭示了磁通量量子平方与玻尔半径(Bohr radius)间的关联,以及原子内波函数(wave function)的物理意义。本研究得到的理论结果,与本文所采用的NIST CODATA 2018发布的实验数据完全吻合,从而验证了该关联的存在性。

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2024-02-19
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