Bulletin of the American Physical Society
66th Annual Meeting of the APS Division of Plasma Physics
Monday–Friday, October 7–11, 2024; Atlanta, Georgia
Session NP12: Poster Session V:
Fundamental Plasma Physics III: waves, self-organization
Fundamental Plasma Physics IV: turbulence, reconnection, non-neutral/antimatter
High Field Tokamaks
Mirrors
9:30 AM - 12:30 PM
Wednesday, October 9, 2024
Hyatt Regency
Room: Grand Hall West
Abstract: NP12.00066 : Computational Analysis of Hypervelocity Impact Iron Plasma Generation
Presenter:
Dennis Dong
Authors:
Dennis Dong
Raymond Lau
(Stanford University)
Nicolas Lee
(Stanford)
Sigrid Elschot
(Stanford University)
Initial temperatures and densities for the algorithm are calculated using a thermodynamics-based methodology. This employs the Tillotson equation of state and assumes a Fermi-Diract distribution. An increase in plasma density is observed alongside a decrease in the ground-state neutral density and electron temperature. Near-complete ionization occurs on the order of femtoseconds, which is much faster than other physical processes of interest, such as plasma expansion and electromagnetic radiation. This validates the common assumption that full ionization occurs instantly, allowing the initial ionization steps to be ignored when performing plasma expansion simulations and analyses. The results of this work are consistent with previous computational studies, such as steady-state electron temperatures on the order of magnitude of 0.1 eV and full ionization dependent on impactor speed.
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