Geometric Unification of Electromagnetism and Gravitation

R. Beach
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Abstract

A recently proposed classical field theory comprised of four field equations that geometrically couple the Maxwell tensor to the Riemann-Christoffel curvature tensor in a fundamentally new way is reviewed and extended. The new theory's field equations show little resemblance to the field equations of classical physics, but both Maxwell's equations of electromagnetism and Einstein's equation of General Relativity augmented by a term that can mimic the properties of dark matter and dark energy are shown to be a consequence. Emphasized is the emergence of gravity and the unification brought to electromagnetic and gravitational phenomena as well as the consistency of solutions of the new theory with those of the classical Maxwell and Einstein field equations. Unique to the four field equations reviewed here and based on specific solutions to them are: the emergence of antimatter and its behavior in gravitational fields, the emergence of dark matter and dark energy mimicking terms in the context of General Relativity, an underlying relationship between electromagnetic and gravitational radiation, the impossibility of negative mass solutions that would generate repulsive gravitational fields or antigravity, and a method for quantizing the charge and mass of particle-like solutions.
电磁与万有引力的几何统一
最近提出的由四个场方程组成的经典场论以一种全新的方式对麦克斯韦张量和黎曼-克里斯托费尔曲率张量进行了几何耦合。新理论的场方程与经典物理学的场方程几乎没有相似之处,但麦克斯韦的电磁学方程和爱因斯坦的广义相对论方程都被一个可以模拟暗物质和暗能量特性的术语所增强,这被证明是一个结果。重点是引力的出现和电磁和引力现象的统一,以及新理论解与经典麦克斯韦和爱因斯坦场方程解的一致性。这里回顾的四个场方程的独特之处在于它们的具体解是:反物质的出现及其在引力场中的行为,广义相对论背景下暗物质和暗能量模拟术语的出现,电磁和引力辐射之间的潜在关系,负质量解不可能产生排斥性引力场或反引力,以及粒子解的电荷和质量量子化方法。
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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