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TitleConservative semi-Lagrangian kinetic scheme coupled with implicit finite element field solver for multidimensional Vlasov Maxwell system
Creator
Date Issued2021-11-01
Source PublicationCommunications in Nonlinear Science and Numerical Simulation
ISSN1007-5704
Volume102
Abstract

In this paper, a conservative semi-Lagrangian (CSL) kinetic scheme coupled with an implicit finite element method (IFEM) is developed for multidimensional electromagnetic plasma simulations. The present method (CSL-IFEM) enjoys the respective advantages of the CSL and IFEM, including mass conservation, high-order spatial accuracy, as well as being free from the Courant-Friedrichs-Lewy (CFL) condition. In present CSL-IFEM, the CSL scheme with a general high order positivity-preserving limiter is utilized for the spatial discretization of the Vlasov equation, which enables the proposed method to remove the CFL limitation in phase space, exactly conserve mass, and preserve the positivity of the distribution function. The IFEM solver is developed for the spatial discretization of the Maxwell equation, which makes the current method free from CFL limitation induced by the speed of light and easily handles general field boundary conditions. To make the proposed CSL-IFEM more efficient in multidimensional simulations, the dimensional splitting procedure and sparse matrix technology are implemented in CSL and IFEM, respectively. Then the Vlasov solver CSL and Maxwell solver IFEM are coupled via the current density calculated from the general Ohm law. Finally, several numerical experiments, including electromagnetic wave (2d0v), particle gyromotion (0d2v), streaming Weibel instability (1d2v) and magnetic reconnection (2d3v), are performed to demonstrate the capabilities of the proposed method.

KeywordElectromagnetic plasmas Finite element method Magnetic reconnection Semi-Lagrangian scheme Vlasov-Maxwell system
DOI10.1016/j.cnsns.2021.105941
URLView source
Indexed BySCIE
Language英语English
WOS Research AreaMathematics ; Mechanics ; Physics
WOS SubjectMathematics, Applied ; Mathematics, Interdisciplinary Applications ; Mechanics ; Physics, Fluids & Plasmas ; Physics, Mathematical
WOS IDWOS:000684877000006
Scopus ID2-s2.0-85109514837
Citation statistics
Cited Times:9[WOS]   [WOS Record]     [Related Records in WOS]
Document TypeJournal article
Identifierhttp://repository.uic.edu.cn/handle/39GCC9TT/5951
CollectionFaculty of Science and Technology
Corresponding AuthorCao, Yong
Affiliation
1.School of Mechanical Engineering and Automation,Harbin Institute of Technology,Shenzhen,518055,China
2.Department of Mathematics,Center for Mathematical Plasma Astrophysics,KU Leuven,University of Leuven,3001,Belgium
3.Research Center for Mathematics,Beijing Normal University at Zhuhai,and Division of Science and Technology,United International College (BNU-HKBU),Zhuhai,519087,China
Recommended Citation
GB/T 7714
Liu, Hongtao,Cai, Xiaofeng,Lapenta, Giovanniet al. Conservative semi-Lagrangian kinetic scheme coupled with implicit finite element field solver for multidimensional Vlasov Maxwell system[J]. Communications in Nonlinear Science and Numerical Simulation, 2021, 102.
APA Liu, Hongtao, Cai, Xiaofeng, Lapenta, Giovanni, & Cao, Yong. (2021). Conservative semi-Lagrangian kinetic scheme coupled with implicit finite element field solver for multidimensional Vlasov Maxwell system. Communications in Nonlinear Science and Numerical Simulation, 102.
MLA Liu, Hongtao,et al."Conservative semi-Lagrangian kinetic scheme coupled with implicit finite element field solver for multidimensional Vlasov Maxwell system". Communications in Nonlinear Science and Numerical Simulation 102(2021).
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