Abstract:
The THERMOS toolkit was improved by a module for calculating the properties of the non-stationary plasma. Using it, a low-density photoionized neon plasma obtained in experiments [1] was simulated. Calculations of the ion populations, the rates of elementary processes, and the radiation spectra were compared with the results obtained by other scientific groups.
Citation:
D. A. Kim, I. Yu. Vichev, A. D. Solomyannaya, A. S. Grushin, “THERMOS: Simulation of non-stationary neon plasma”, Keldysh Institute preprints, 2020, 058, 16 pp.
This publication is cited in the following 5 articles:
Dmitrii Andreevich Kim, Ilia Yurievich Vichev, Anna Dmitrievna Solomyannaya, Alexander Sergeevich Grushin, “Simulation of dense aluminum plasma under intense x-rays”, MathMon, 58 (2023), 68
A. A. Novikov, D. A. Kim, I. Yu. Vichev, A. D. Solomyannaya, A. S. Grushin, B. L. Yartsev, “Chislennoe issledovanie izluchayuschei plazmy ksenona”, Preprinty IPM im. M. V. Keldysha, 2022, 057, 15 pp.
A. S. Grushin, I. Yu. Vichev, D. A. Kim, A. D. Solomyannaya, “Approximate methods of taking into account nonequilibrium radiation field in plasmas”, Keldysh Institute preprints, 2022, 10–22
D. A. Kim, I. Yu. Vichev, A. D. Solomyannaya, A. S. Grushin, “Modelirovanie plotnoi alyuminievoi plazmy pod vozdeistviem rentgenovskogo izlucheniya”, Preprinty IPM im. M. V. Keldysha, 2021, 097, 15 pp.
G. A. Vergunova, S. Yu. Gus'kov, R. A. Yakhin, “Influence of Low-Mode Violations of Irradiation Homogeneity on Indirect-Drive Thermonuclear Capsule Compression and Burning”, J Russ Laser Res, 42:3 (2021), 304