A Model of Electric Field in the Vicinity of Charged Particle

J. Kaczmarek
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引用次数: 1

Abstract

In this paper a method of modelling electric field near charged particles is introduced. Main assumption considered states that the field takes a constant value on surfaces of particles. This value is maximal admissible value of the electric field in the vacuum medium. Such an assumption induces immediately the problem how to model constant value of charge for particles with various sizes. It is shown that modelling of such a situation is possible when we assume electric field which is considerably more flat near the particle as compared with Coulomb field introduced on larger distances from the particle. Equations which describe behaviour of the electric field in the vicinity of the charged particles are discussed. They are derived with the help of assumptions introduced for four-component vacuum medium. Dominant assumption related to interactions within components states that elements of the medium responsible for generation of electric field attract themselves. Derived equations are of second order with respect to space variables and describe also the Coulomb law at larger distances from the particle. Such a possibility is attained by introduction displacements associated with intensity of electric field. This step also makes possible to adopt methods of continuum mechanics in description of the vacuum medium behaviour. Possibility of breaking the charge conservation law is discussed within this method of modelling.
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带电粒子附近的电场模型
本文介绍了一种模拟带电粒子附近电场的方法。所考虑的主要假设是粒子表面上的场取恒定值。该值是真空介质中电场的最大容许值。这样的假设立即引出了如何对不同大小的粒子的定荷值进行建模的问题。结果表明,当我们假设电场在离粒子较远的地方比在离粒子较远的地方更平坦时,模拟这种情况是可能的。讨论了描述带电粒子附近电场行为的方程。它们是根据四组分真空介质的假设推导出来的。与元件内部相互作用有关的主要假设是,产生电场的介质元素相互吸引。导出的方程是关于空间变量的二阶方程,也描述了距离粒子较远的库仑定律。这种可能性是通过引入与电场强度相关的位移来实现的。这一步骤也使得采用连续介质力学方法来描述真空介质的行为成为可能。在这种建模方法中讨论了打破电荷守恒定律的可能性。
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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