Electrons energy distribution in helium plasma, generated by fission fragments

The problem of ionization and excitation pair prices in any gas medium can be solved by modeling the process of exchanging energy of the primary electrons with neutrals by Monte Carlo technique. The advantage of this method is that the physical processes of individual collisions of electrons are as...

Full description

Bibliographic Details
Main Authors: S. Kunakov, E. Son, Zh. Bolatov
Format: Article
Language:English
Published: Al-Farabi Kazakh National University 2015-10-01
Series:Physical Sciences and Technology
Subjects:
Online Access:http://phst/index.php/journal/article/view/47
_version_ 1797645267954040832
author S. Kunakov
E. Son
Zh. Bolatov
author_facet S. Kunakov
E. Son
Zh. Bolatov
author_sort S. Kunakov
collection DOAJ
description The problem of ionization and excitation pair prices in any gas medium can be solved by modeling the process of exchanging energy of the primary electrons with neutrals by Monte Carlo technique. The advantage of this method is that the physical processes of individual collisions of electrons are associated with a direct statistical analogy – branching random walk of a particle in a one–dimensional phase space. In this case, the transition probabilities are determined by the relevant integral cross sections of the processes of electron interactions with neutrals. This method allows a more complete analysis of the process, calculating as an average values of the characteristics of the interaction, and the time evolution of the electrons energy distribution.
first_indexed 2024-03-11T14:44:49Z
format Article
id doaj.art-ea7fcbf0ff0049f094505aedec7d7429
institution Directory Open Access Journal
issn 2409-6121
language English
last_indexed 2024-03-11T14:44:49Z
publishDate 2015-10-01
publisher Al-Farabi Kazakh National University
record_format Article
series Physical Sciences and Technology
spelling doaj.art-ea7fcbf0ff0049f094505aedec7d74292023-10-30T13:11:36ZengAl-Farabi Kazakh National UniversityPhysical Sciences and Technology2409-61212015-10-0112Electrons energy distribution in helium plasma, generated by fission fragmentsS. KunakovE. SonZh. BolatovThe problem of ionization and excitation pair prices in any gas medium can be solved by modeling the process of exchanging energy of the primary electrons with neutrals by Monte Carlo technique. The advantage of this method is that the physical processes of individual collisions of electrons are associated with a direct statistical analogy – branching random walk of a particle in a one–dimensional phase space. In this case, the transition probabilities are determined by the relevant integral cross sections of the processes of electron interactions with neutrals. This method allows a more complete analysis of the process, calculating as an average values of the characteristics of the interaction, and the time evolution of the electrons energy distribution.http://phst/index.php/journal/article/view/47Monte Carlo methodenergy distributionexcites atomselectron ionizationcross section. PACS numbers52.70.-m
spellingShingle S. Kunakov
E. Son
Zh. Bolatov
Electrons energy distribution in helium plasma, generated by fission fragments
Physical Sciences and Technology
Monte Carlo method
energy distribution
excites atoms
electron ionization
cross section. PACS numbers
52.70.-m
title Electrons energy distribution in helium plasma, generated by fission fragments
title_full Electrons energy distribution in helium plasma, generated by fission fragments
title_fullStr Electrons energy distribution in helium plasma, generated by fission fragments
title_full_unstemmed Electrons energy distribution in helium plasma, generated by fission fragments
title_short Electrons energy distribution in helium plasma, generated by fission fragments
title_sort electrons energy distribution in helium plasma generated by fission fragments
topic Monte Carlo method
energy distribution
excites atoms
electron ionization
cross section. PACS numbers
52.70.-m
url http://phst/index.php/journal/article/view/47
work_keys_str_mv AT skunakov electronsenergydistributioninheliumplasmageneratedbyfissionfragments
AT eson electronsenergydistributioninheliumplasmageneratedbyfissionfragments
AT zhbolatov electronsenergydistributioninheliumplasmageneratedbyfissionfragments