Continuum-kinetic approach to sheath simulations
POSTER
Abstract
Simulations of sheaths are performed using a novel continuum-kinetic model with collisions including ionization/recombination. A discontinuous Galerkin method is used to directly solve the Boltzmann-Poisson system to obtain a particle distribution function. Direct discretization of the distribution function has advantages of being noise-free compared to particle-in-cell methods. The distribution function, which is available at each node of the configuration space, can be readily used to calculate the collision integrals in order to get ionization and recombination operators. Analytical models are used to obtain the cross-sections as a function of energy. Results will be presented incorporating surface physics with a classical sheath in Hall thruster-relevant geometry.
Authors
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Petr Cagas
Virginia Tech
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A. Hakim
Princeton Plasma Physics Lab, Princeton Plasma Physics Laboratory, Princeton Plasma Phys Lab
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Bhuvana Srinivasan
Virginia Tech University, Virginia Tech