The quantum nature of the weak interaction

Melissa B. Blau
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Abstract

From the fundamental noνα = 1 formula, the up quark was identified as an exchange particle based on its mass, which implies that the particle is newly formed and not, as the current theory says, transformed from the d quark through ß-decay. The quark rotation most possibly imparts a fast oscillatory rotation to the quarks (weak interaction), which in turn imparts the rotation to the nucleon. The transferred rotation is partially decoupled from the quarks, which means that the transferred rotation velocity does not depend on the oscillation velocity of the quark structure, but on its radius r, where r is the virtual quantized radius of the quark rotation or quark oscillation. In case of the week interaction, when the quarks begin to oscillate, the rotation is partially decoupled from the individual quarks and transferred to the triple quark structure in the transverse direction to the main axis of rotation. From this, a unified formula for the gravitation and EM forces could be deduced.
弱相互作用的量子性质
根据基本的noνα = 1公式,上夸克根据其质量被确定为交换粒子,这意味着该粒子是新形成的,而不是像目前的理论所说的那样,从d夸克通过ß-衰变转化而来。夸克旋转很可能给夸克带来了一个快速的振荡旋转(弱相互作用),这反过来又给核子带来了旋转。传递的旋转与夸克部分解耦,这意味着传递的旋转速度不取决于夸克结构的振荡速度,而是取决于其半径r,其中r是夸克旋转或夸克振荡的虚量子化半径。在周相互作用的情况下,当夸克开始振荡时,旋转从单个夸克部分解耦,并在旋转主轴的横向方向上转移到三夸克结构中。由此可以推导出引力和电磁力的统一公式。
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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