Scientific journal paper Q1
Particle merging algorithm for PIC codes
Marija Vranic (Vranic, M.); Thomas Grismayer (Grismayer, T.); Joana Luis Martins (Martins, J. L.); Ricardo Fonseca (Fonseca, R. A.); Luís Miguel Oliveira Silva (Silva, L. O.);
Journal Title
Computer Physics Communications
Year (definitive publication)
2015
Language
English
Country
Netherlands
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Abstract
Particle-in-cell merging algorithms aim to resample dynamically the six-dimensional phase space occupied by particles without distorting substantially the physical description of the system. Whereas various approaches have been proposed in previous works, none of them seemed to be able to conserve fully charge, momentum, energy and their associated distributions. We describe here an alternative algorithm based on the coalescence of N massive or massless particles, considered to be close enough in phase space, into two new macro-particles. The local conservation of charge, momentum and energy are ensured by the resolution of a system of scalar equations. Various simulation comparisons have been carried out with and without the merging algorithm, from classical plasma physics problems to extreme scenarios where quantum electrodynamics is taken into account, showing in addition to the conservation of local quantities, the good reproducibility of the particle distributions. In case where the number of particles ought to increase exponentially in the simulation box, the dynamical merging permits a considerable speedup, and significant memory savings that otherwise would make the simulations impossible to perform.
Acknowledgements
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Keywords
Coalescence scheme,Particle-in-cell,QED cascade
  • Mathematics - Natural Sciences
  • Computer and Information Sciences - Natural Sciences
Funding Records
Funding Reference Funding Entity
267841 Comissão Europeia
IF/01780/201 Fundação para a Ciência e a Tecnologia
SFRH/BD/62137/2009 Fundação para a Ciência e a Tecnologia