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- W2102593514 abstract "The fast and accurate computation of the electric forces that drive the motion of charged particles at the nanometer scale represents a computational challenge. For this kind of system, where the discrete nature of the charges cannot be neglected, boundary element methods (BEM) represent a better approach than finite differences/finite elements methods. In this article, we compare two different BEM approaches to a canonical electrostatic problem in a three-dimensional space with inhomogeneous dielectrics, emphasizing their suitability for particle-based simulations: the iterative method proposed by Hoyles et al. and the Induced Charge Computation introduced by Boda et al." @default.
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- W2102593514 date "2012-02-16" @default.
- W2102593514 modified "2023-09-25" @default.
- W2102593514 title "Particle-based simulation of charge transport in discrete-charge nano-scale systems: the electrostatic problem" @default.
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- W2102593514 doi "https://doi.org/10.1186/1556-276x-7-135" @default.
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