Particle Mass Oscillation through Tachyon Interaction

L. Nanni
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Abstract

In this study, a novel theory to investigate the mass oscillation of particles is proposed. It has been proven that, at high-energy conditions, the fermion field described by Dirac’s Lagrangian interacts with the half-integer spin tachyon field with negative energy, causing the formation of composite particles whose mass depends on the total angular momentum. The proposed theory is based on a new interpretation of the Majorana equation for particles with arbitrary spin and shows that mass oscillation is a phenomenon in which the component of particle decay prevails over that of mixing mass states. Using the kinematic of Lemke for spacelike particle decay, we propose a mechanism able to explain the neutrino flavour change. The proposed mechanism is also investigated concerning the shape of its spectrum. Finally, the Lagrangian field of composite particles is formulated.
通过速子相互作用的粒子质量振荡
本文提出了一种研究粒子质量振荡的新理论。已经证明,在高能条件下,狄拉克拉格朗日所描述的费米子场与负能量的半整数自旋速子场相互作用,导致复合粒子的形成,其质量取决于总角动量。提出的理论是基于对任意自旋粒子的马约拉纳方程的一种新的解释,并表明质量振荡是一种粒子衰变成分胜过混合质量状态成分的现象。利用类空间粒子衰变的Lemke运动学,我们提出了一种能够解释中微子味道变化的机制。本文还对其谱的形状进行了研究。最后,给出了复合粒子的拉格朗日场。
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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