We discuss the relation between the gravitational and electromagnetic fields as governed by the Einstein-Maxwell field equations. It is emphasized that the tendency of the gravitational field to induce electromagnetic effects increases as the size of the system goes down. In particular, the gravitational field, according to general relativity, tends to become dominated by the spin at distances of the order of the Compton wavelength. The relevant quantity which governs this behavior is the ratio S/M^2 where S is the (spin) angular momentum. For an electron, S/M^2 ~ 10^44. Therefore, gravitomagnetic effects will play a significant role in the subatomic domain. To analyze this situation we use the asymptotic structure in the form of the multipole fields. Some important consequences for the electromagnetic fields of charged particles with spin are pointed out. In particular, the gravitational field may induce corrections to the Coulomb field which can be tested experimentally.
翻译:我们讨论由爱因斯坦- Maxwell 字段方程式调节的引力场和电磁场之间的关系。 我们强调引力场随着系统缩小而引发电磁效应的趋势随着系统缩小而增加。 特别是, 根据一般相对论, 引力场往往会以Compton波长的偏差旋转为主。 支配此行为的有关数量是S/ M ⁇ 2之比, 其中S是( 平) 角动力。 因此, 电子 S/M ⁇ 2~ 10 ⁇ 44。 因此, 引力场效应将在亚原子域中扮演重要角色。 为了分析这种情况, 我们用多极域的形式使用引力场结构来分析。 指出了对有源粒子电磁场的一些重要后果。 特别是, 引力场可能会对可实验的库伦域进行校正 。