The Electromagnetic Field outside the Steadily Rotating Relativistic Uniform System

IF 0.5 Q4 PHYSICS, MULTIDISCIPLINARY
Sergey G. Fedosin
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引用次数: 1

Abstract

Abstract: Using the method of retarded potentials, approximate formulae are obtained that describe the electromagnetic field outside the relativistic uniform system in the form of a charged sphere rotating at a constant speed. For the near, middle and far zones, the corresponding expressions are found for the scalar and vector potentials, as well as for the electric and magnetic fields. Then, these expressions are assessed for correspondence to the Laplace equations for potentials and fields. One of the purposes is to test the truth of the assumption that the scalar potential and the electric field depend neither on the value of the angular velocity of rotation of the sphere nor on the direction to the point where the field is measured. However, calculations show that potentials and fields increase as the observation point gets closer to the sphere’s equator and to the sphere’s surface, compared with the case for a stationary sphere. In this case, additions are proportional to the square of the angular velocity of rotation and the square of the sphere’s radius and inversely proportional to the square of the speed of light. The largest found relative increase in potentials and fields could reach the value of 4% for the rapidly rotating neutron star PSR J1614-2230, if the star were charged. For a proton, a similar increase in fields on its surface near the equator reaches 54%. Keywords: Electromagnetic field, Relativistic uniform system, Rotation.
稳定旋转相对论均匀系统外的电磁场
文摘:利用延迟势的方法,得到了描述相对论均匀系统外电磁场的近似公式,该系统是以带电球体匀速旋转的形式存在的。对于近区、中区和远区,找到了标量势和矢量势以及电场和磁场的相应表达式。然后,评估这些表达式与电势和场的拉普拉斯方程的对应性。其中一个目的是检验标量势和电场既不取决于球体旋转角速度的值,也不取决于测量场的点的方向这一假设的真实性。然而,计算表明,与静止球体的情况相比,随着观测点越来越靠近球体的赤道和表面,电势和场会增加。在这种情况下,加法与旋转角速度的平方和球体半径的平方成正比,与光速的平方成反比。如果快速旋转的中子星PSR J1614-2230带电,则发现的电势和场的最大相对增加可能达到4%。对于质子来说,其赤道附近表面的场的类似增加达到54%。关键词:电磁场,相对论均匀系统,旋转。
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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来源期刊
Jordan Journal of Physics
Jordan Journal of Physics PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.90
自引率
14.30%
发文量
38
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