Kinetic Simulations of Electron Pre-energization by Magnetized Collisionless Shocks in Expanding Laboratory Plasmas

Author:

Lezhnin K. V.ORCID,Fox W.,Schaeffer D. B.,Spitkovsky A.,Matteucci J.,Bhattacharjee A.,Germaschewski K.

Abstract

Abstract Collisionless shocks are common features in space and astrophysical systems where supersonic plasma flows interact, such as in the solar wind, the heliopause, and supernova remnants. Recent experimental capabilities and diagnostics allow detailed laboratory investigations of high-Mach-number shocks, which therefore can become a valuable way to understand shock dynamics in various astrophysical environments. Using 2D particle-in-cell simulations with a Coulomb binary collision operator, we demonstrate the mechanism for generation of energetic electrons and experimental requirements for detecting this process in the laboratory high-Mach-number collisionless shocks. We show through a parameter study that electron acceleration by magnetized collisionless shocks is feasible in laboratory experiments with laser-driven expanding plasmas.

Funder

DOE ∣ NNSA ∣ LDRD ∣ Princeton Plasma Physics Laboratory

NSF ∣ MPS ∣ Division of Physics

NSF ∣ MPS ∣ Division of Astronomical Sciences

NASA

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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