EZ: An efficient, charge conserving current deposition algorithm for electromagnetic particle-in-cell simulations

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Abstract

We present EZ, a novel current deposition algorithm for particle-in-cell (PIC) simulations. EZ calculates the current density on the electromagnetic grid due to macro-particle motion within a time step by solving the continuity equation of electrodynamics. Being a charge conserving hybridization of Esirkepov's method and ZigZag, we refer to it as “EZ” as shorthand for “Esirkepov meets ZigZag”. Simulations of a warm, relativistic plasma with PIConGPU show that EZ achieves the same level of charge conservation as the commonly used method by Esirkepov, yet reaches higher performance for macro-particle assignment-functions up to third-order. In addition to a detailed description of the functioning of EZ, reasons for the expected and observed performance increase are given, and guidelines for its implementation aiming at highest performance on GPUs are provided.

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Steiniger, K., Widera, R., Bastrakov, S., Bussmann, M., Chandrasekaran, S., Hernandez, B., … Debus, A. (2023). EZ: An efficient, charge conserving current deposition algorithm for electromagnetic particle-in-cell simulations. Computer Physics Communications, 291. https://doi.org/10.1016/j.cpc.2023.108849

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