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Electrostatics in the presence of dielectrics: The benefits of treating the induced surface charge density directly

机译:有电介质的静电:直接处理感应的表面电荷密度的好处

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摘要

A new method is presented for solving electrostatic boundary value problems with dielectrics or conductors and is applied to systems with spherical geometry. The strategy of the method is to treat the induced surface charge density as the variable of the boundary value problem. Because the potential is expressed directly in terms of the induced surface charge density, the potential is automatically continuous at the boundary. The remaining boundary condition produces an algebraic equation for the surface charge density, which when solved leads to the potential. The surface charge method requires the enforcement of only one boundary condition, and produces the induced surface charge in addition to the potential with no additional labor. The surface charge method also can be applied in nonspherical geometries and provides a starting place for efficient numerical solutions. (C) 2004 American Association of Physics Teachers. [References: 12]
机译:提出了一种解决电介质或导体静电边界值问题的新方法,并将其应用于具有球形几何形状的系统。该方法的策略是将感应的表面电荷密度视为边界值问题的变量。因为电势直接用感应的表面电荷密度表示,所以电势在边界处自动连续。剩余的边界条件产生了表面电荷密度的代数方程,当求解时会产生电势。表面电荷法只需要执行一个边界条件,并且除了产生电位外,还可以产生感应的表面电荷,而无需额外的劳动。表面电荷方法也可以应用于非球形几何形状,并为有效的数值解提供了起点。 (C)2004年美国物理教师协会。 [参考:12]

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