论文标题
用重力扭转完成电子理论
Completing the Theory of Electron with Gravitational Torsion
论文作者
论文摘要
我们证明,可以通过在爱因斯坦 - 卡丹 - 斯卡米 - 凯布尔重力理论中出现的重力扭转来完成经典和量子电动力学,从而提供了电子理论的缺失部分。该理论的一个方程之一,一种称为hehl-datta方程的dirac类型方程式,包含量子电动力学的拉格朗日密度中的引力自旋 - 转向项。该术语将带电的费米旋转与重力扭转联系起来,并为无限的电磁体能力提供了机械能反平衡。结果,电子没有“裸机”的质量,许多情况也不需要重新归一化。
We demonstrate that classical and quantum electrodynamics can be completed by gravitational torsion appearing in Einstein-Cartan-Sciama-Kibble theory of gravity, providing the missing part of the electron theory. One of the equations of this theory, a version of Dirac type equation for fermions called Hehl-Datta equation, contains a gravitational spin-torsion term in the Lagrangian density for quantum electrodynamics. This term relates the charged fermion spin to gravitational torsion and provides a mechanical energy counter-balance to the infinite electromagnetic self-energy. As a result, there is no "bare" mass for an electron, nor is renormalization required for many scenarios.