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Efficient and accurate simulation of dynamic dielectric objects

机译:动态介电物体的高效,准确仿真

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Electrostatic interactions between dielectric objects are complex and of a many-body nature, owing to induced surface bound charge.We present a collection of techniques to simulate dynamical dielectric objects.We calculate the surface bound charge from a matrix equation using the Generalized Minimal Residue method (GMRES). Empirically, we find that GMRES converges very quickly. Indeed, our detailed analysis suggests that the relevant matrix has a very compact spectrum for all non-degenerate dielectric geometries. Each GMRES iteration can be evaluated using a fast Ewald solver with cost that scales linearly or near-linearly in the number of surface charge elements. We analyze several previously proposed methods for calculating the bound charge, and show that our approach compares favorably.
机译:由于感应到的表面束缚电荷,介电对象之间的静电相互作用很复杂并且具有多体性质。我们提出了一组模拟动态介电对象的技术。我们使用广义最小残差法从矩阵方程中计算表面束缚电荷(GMRES)。根据经验,我们发现GMRES收敛非常快。确实,我们的详细分析表明,对于所有未退化的电介质几何形状,相关的矩阵具有非常紧凑的光谱。可以使用快速的Ewald解算器来评估每个GMRES迭代,其成本在表面电荷元素的数量上线性或近乎线性地扩展。我们分析了几种先前提出的用于计算束缚电荷的方法,并表明我们的方法具有可比性。

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