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Solutions for the electric potential and field distribution in cylindrical core-shell nanoparticles using the image charge method

机译:图像电荷法求解圆柱核壳纳米粒子的电势和电场分布

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This article considers the problem of finding the electrostatic potential that is given in terms of a scalar function called Green function in dielectric cylindrical nanoparticles with core-shell structure using the image charge method. By using this method that allows us to solve differential form of electric potential problem by the Green function, we investigate the distribution of the electric field in the configuration of a cylindrical nanoparticle surrounded by a continuum dielectric medium. By utilizing this well-known method, we obtain exact analytical formulas for the electrostatic potential and the electric field inside the shell, core and surrounding space of nanoparticle that can be applied to analysis of electromagnetic problems, electrostatic interactions in biomolecular simulations and also computer simulations of condensed-matter media.
机译:本文考虑使用图像电荷法在具有核-壳结构的介电圆柱形纳米颗粒中寻找一种称为标量函数(称为格林函数)的静电势的问题。通过使用这种方法,我们可以通过格林函数来解决电势问题的微分形式,我们研究了被连续介电介质包围的圆柱纳米粒子构型中的电场分布。通过使用这种众所周知的方法,我们可以获得纳米粒子的壳,核和周围空间内部的静电势和电场的精确解析公式,这些公式可用于分析电磁问题,生物分子模拟以及计算机模拟中的静电相互作用凝聚态介质。

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