Nonlinear evolution of the magnetized Kelvin-Helmholtz instability: From fluid to kinetic modeling

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Henri, P.; Cerri, S. S.; Califano, F.; Pegoraro, F.; Rossi, C.; Faganello, M.; Šebek, O.; Trávníček, P. M.; Hellinger, P.; Frederiksen, J. T.; Nordlund, A.; Markidis, S.; Keppens, R.; Lapenta, G.;
  • Publisher: AMER INST PHYSICS
  • Journal: PHYSICS OF PLASMAS,volume 20,issue 10,page102,118 (issn: 1070-664X)
  • Publisher copyright policies & self-archiving
  • Related identifiers: doi: 10.1063/1.4826214
  • Subject: Physics - Space Physics | Ion Larmor Radius | Boundary | Physics - Plasma Physics | Physics - Computational Physics | Current Advance Method | Schemes | Simulations | Astrophysics - Earth and Planetary Astrophysics | Physical Sciences | Fysik | Parallel | Vortices | Magnetopause | Plasma | Fields
    arxiv: Physics::Space Physics | Physics::Plasma Physics

The nonlinear evolution of collisionless plasmas is typically a multi-scale process, where the energy is injected at large, fluid scales and dissipated at small, kinetic scales. Accurately modelling the global evolution requires to take into account the main micro-scale... View more
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