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CITATION.bib
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CITATION.bib
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@article{CROUSEILLES2014636,
title = "Charge-conserving grid based methods for the Vlasov–Maxwell equations",
journal = "Comptes Rendus Mécanique",
volume = "342",
number = "10",
pages = "636 - 646",
year = "2014",
note = "Theoretical and numerical approaches for Vlasov-maxwell equations",
issn = "1631-0721",
doi = "https://doi.org/10.1016/j.crme.2014.06.012",
url = "http://www.sciencedirect.com/science/article/pii/S163107211400151X",
author = "Nicolas Crouseilles and Pierre Navaro and Éric Sonnendrücker",
keywords = "Maxwell–Vlasov system, Discrete continuity equation, Finite volume method, Spectral method, Semi-Lagrangian method",
abstract = "In this article, we introduce numerical schemes for the Vlasov–Maxwell equations relying on different kinds of grid-based Vlasov solvers, as opposite to PIC schemes, which enforce a discrete continuity equation. The idea underlying these schemes relies on a time-splitting scheme between configuration space and velocity space for the Vlasov equation and on the computation of the discrete current in a form that is compatible with the discrete Maxwell solver."
}