引力的弱点是一种错觉,它隐藏了引力与粒子物理统一的真正途径

A. Burinskii
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引用次数: 8

摘要

粒子物理学中众所周知的引力弱是由于低估自旋在引力中的作用而造成的错觉。相对论性旋转与自旋是分不开的,基本粒子的自旋非常高,超过质量20-22个数量级(以自然普朗克单位计算)。如此巨大的自旋产生了比质量更强烈的扭曲空间的框架拖拽,引力相互作用的有效尺度从普朗克距离转移到康普顿距离。我们证明了引力和量子理论之间的兼容性可以在不修改爱因斯坦-麦克斯韦方程的情况下实现,通过耦合到对称破缺的超对称希格斯模型并形成非摄动超袋解,从而产生量子理论一致工作所必需的无重力康普顿区。Super-bag自然升级为Wess-Zumino超对称QED模型,形成了通向传统QED微扰形式的桥梁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Weakness of gravity as illusion which hides true path to unification of gravity with particle physics
Well known weakness of Gravity in particle physics is an illusion caused by underestimation of the role of spin in gravity. Relativistic rotation is inseparable from spin, which for elementary particles is extremely high and exceeds mass on 20-22 orders (in natural Planck units). Such a huge spin generates frame-dragging that distorts space much stronger than mass, and effective scale of gravitational interaction is shifted from Planck to Compton distances. We show that compatibility between gravity and quantum theory can be achieved without modifications of Einstein-Maxwell equations, by coupling to a supersymmetric Higgs model of symmetry breaking and forming a non-perturbative super-bag solution, which generates a gravity-free Compton zone necessary for consistent work of quantum theory. Super-bag is naturally upgraded to Wess-Zumino supersymmetric QED model, forming a bridge to perturbative formalism of conventional QED.
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