New applications for the Boris Spectral Deferred Correction algorithm for plasma simulations

•Investigation of the performance of Boris-SDC as particle pusher in particle-in-cell code•Extension of Boris-SDC to relativistic regimes•Boris-SDC provides higher accuracy than Boris but computational cost is about the same The paper investigates two new use cases for the Boris Spectral Deferred Co...

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Veröffentlicht in:Applied mathematics and computation 2023-04, Vol.442, p.127706, Article 127706
Hauptverfasser: Smedt, Kris, Ruprecht, Daniel, Niesen, Jitse, Tobias, Steven, Nättilä, Joonas
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Sprache:eng
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Zusammenfassung:•Investigation of the performance of Boris-SDC as particle pusher in particle-in-cell code•Extension of Boris-SDC to relativistic regimes•Boris-SDC provides higher accuracy than Boris but computational cost is about the same The paper investigates two new use cases for the Boris Spectral Deferred Corrections (Boris-SDC) time integrator for plasma simulations. First, we show that using Boris-SDC as a particle pusher in an electrostatic particle-in-cell (PIC) code can, at least in the linear regime, improve simulation accuracy compared with the standard second order Boris method. In some instances, the higher order of Boris-SDC even allows a much larger time step, leading to modest computational gains. Second, we propose a modification of Boris-SDC for the relativistic regime. Based on an implementation of Boris-SDC in the RUNKO PIC code, we demonstrate for a relativistic Penning trap that Boris-SDC retains its high order of convergence for velocities ranging from 0.5c to >0.99c.
ISSN:0096-3003
1873-5649
DOI:10.1016/j.amc.2022.127706