Multigroup model of calculating the low-energy electron transport in weakly ionized gases
- 作者: Bochkov E.I.1
-
隶属关系:
- Russian Federal Nuclear Center–All-Russian Scientific Research Institute of Experimental Physics
- 期: 卷 50, 编号 5 (2024)
- 页面: 597-613
- 栏目: LOW TEMPERATURE PLASMA
- URL: https://ruspoj.com/0367-2921/article/view/668771
- DOI: https://doi.org/10.31857/S0367292124050093
- EDN: https://elibrary.ru/PWBKDS
- ID: 668771
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详细
Proceeding from the Boltzmann kinetic equation for electrons, the system of multigroup equations for the zero and first moments of the distribution function of low-energy electrons is derived within the Lorentz approximation. The system includes the balance equations for concentration and flux density of electrons and is intended for numerical simulation of the transport and kinetics of electrons in the energy range from zero to several tens of electron volt where the angular distribution of electrons is weakly anisotropic.Results of the numerical calculations of electron transport in helium in homogeneous and inhomogeneous electric fields according to the developed multigroup model are compared with results obtained by the Monte Carlo method.
作者简介
E. Bochkov
Russian Federal Nuclear Center–All-Russian Scientific Research Institute of Experimental Physics
编辑信件的主要联系方式.
Email: e_i_bochkov@mail.ru
俄罗斯联邦, Sarov, Nizhny Novgorod oblast, 607188
参考
- Hagelaar G.J.M., Pitchford L.C. // Plasma Source Sci. Techn. 2005. V. 14. P. 722.
- Sommerer T.J., Hitchon W.N.G., Lawler J.E. // Phys. Rev. A. 1989. V. 39. P. 6356.
- Boeuf J-P., Pitchford L.C. // IEEE Transac. Plasma Sci. 1991. V. 19. P. 286.
- Hitchon W.N.G., Parker G.J., Lawler J.E. // IEEE Transac. Plasma Sci. 1993. V. 21. P. 228.
- Bogaerts A., Gijbels R., Goedheer W.J. // Anal. Chem. 1996. V. 68. P. 2296.
- Wichaidit C., Hitchon W.N.G. // J. Computational Phys. 2005. V. 203. P. 650.
- Donko Z., Hartmann P., Kutasi K. // Plasma Sources Sci. Technol. 2006. V. 15. P. 178.
- Brok W.J.M., Wagenaars E., van Dijk J., van der Mullen J.J.A.M. // IEEE Trans. Plasma Sci. 2007. V. 35. P. 1325.
- Derzsi A., Hartmann P., Korolov I., Karacsony J., BanoG., Donko Z. // J. Phys. D: Appl. Phys. 2009. V. 42. P. 225204.
- Бочков Е.И. // Физика плазмы. 2023. Т. 49. С. 1151.
- Бочков Е.И. // Физика плазмы. 2023. Т. 49. С. 175.
- Rockwood S.D. // Phys. Rev. A. 1973. V. 8. P. 2348.
- Бабич Л.П., Куцык И.М. // ТВТ. 1995. Т. 3. C. 191.
- Бабич Л.П., Кудрявцева М.Л. // ЖЭТФ. 2007. Т. 131. C. 808.
- Holstein T. // Phys. Rev. 1946. V. 70. P. 367.
- Бабич Л.П. // ЖЭТФ. 2004. Т. 125. С. 808.
- Бочков Е.И., Бабич Л.П., Куцык И.М. // Физика плазмы. 2021. Т. 47. С. 935.
- Бочков Е.И., Бабич Л.П. // Физика плазмы. 2022. Т. 48. С. 276.
- Райзер Ю.П. Физика газового разряда. М.: Наука, 1992.
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