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A convergence: Special relativity, zitterbewegung, and new models for the subcomponent structure of quantum particles

机译:融合:狭义相对论,zitterbewegung和量子粒子子结构的新模型

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Hestenes has presented an integration of Schrodinger's zitterbewegung with the spin matrices of the Dirac equation, suggesting the electron can be modeled by a rapidly rotating dipole moment and a frequency related to the de Broglie frequency. He presents an elegant spacetime algebra that provides a reformulation of the Dirac equation that incorporates these real spin characteristics. A similar heuristic model for quantum particles has been derived by this author from a different, quasi-classical premise: That the most fundamental subcomponents of quantum particles all travel at a constant speed of light. Time is equated with the spatial displacement of these subcomponents - the speed of light is the speed of time. This approach suggests a means of integrating special relativity and quantum mechanics with the same concept of time. The relativistic transformation of spinning quantum particles create the appearance of additional, compactified spatial dimensions that can be correlated with the complex phase of the spin matrices as in the Dirac formalism. This paper further examines the convergence on such new models for quantum particles built on this rapid motion of particle subcomponents. The modeling leverages a string-like heuristic for particle subcomponents and a revised description for the wave-like properties of particles. This examination provides useful insights to the real spatial geometries and interactions of electrons and photons.
机译:Hestenes提出了Schrodinger的zitterbewegung与Dirac方程的自旋矩阵的积分,表明电子可以通过快速旋转的偶极矩和与de Broglie频率相关的频率来建模。他提出了一种优雅的时空代数,该代数提供了包含这些真实自旋特征的狄拉克方程的重新表述。作者从另一个类似的准经典前提得出了类似的量子粒子启发式模型:量子粒子的最基本子成分都以恒定的光速传播。时间等于这些子组件的空间位移-光速就是时间的速度。这种方法提出了一种将狭义相对论和量子力学与相同的时间概念相结合的方法。自旋的量子粒子的相对论性转换产生了额外的,紧凑的空间尺寸,这些尺寸可以与自旋矩阵的复杂相位相关联,就像狄拉克形式论中那样。本文进一步研究了基于这种粒子子成分的快速运动而建立的这种新的量子粒子模型的收敛性。该建模利用了粒子子组件的字符串启发式方法和粒子的波状特性的修改描述。这项检查为了解实际的空间几何形状以及电子和光子的相互作用提供了有用的见解。

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