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Superluminal Motion of Free Spin-half Particles in a FiberBundle Formalism

机译:FiberBundle形式主义中自由自旋半粒子的超光速运动

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The hypothesis of the spin of an electron, leading to its angular momentum, is no longer an open question, in science. Experimental evidence like the hydrogen fine structure and the Stern-Gerlach experiment in the 1920s and, recently, Nuclear Magnetic Resonance (NMR) have for long paved the way to definitely end this debate. Equipped with this mathematical machinery potent enough to handle the theories which are of interest to us, the expectation value of the overall relative linear velocity component of a fermion field was investigated in a previous paper, found quantized, and exceeding the speed of light. In the present article, we aim to review and describe this result in the framework of a fiber bundle theory. Using a method developed in the 1980s by Zimmer for Dynamical-System theory, we explicate the feasibility of the superluminal free electron and neutrino result in bundle language.
机译:在科学中,导致电子产生角动量的电子自旋的假设不再是一个悬而未决的问题。诸如氢精细结构和1920年代Stern-Gerlach实验之类的实验证据,以及最近的核磁共振(NMR)一直为肯定结束这场争论铺平了道路。装备有足够强大的数学机制来处理我们感兴趣的理论,我们在先前的论文中研究了费米子场的整体相对线速度分量的期望值,发现该值量化并且超过了光速。在本文中,我们旨在在纤维束理论的框架下回顾和描述这一结果。使用Zimmer在1980年代为动力系统理论开发的方法,我们以束语言解释了超腔自由电子和中微子结果的可行性。

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