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A rigorous Monte-Carlo simulation procedure for ion transport properties in thermal gases
A rigorous procedure of the Monte-Carlo simulation for the motion of ions in gases under the electric fields is developed. This procedure is applicable for the ions having arbitrary collision frequencies dependent on the relative speed referred to the gas particles. Test calculations are performed i...
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Published in: | Journal of the Physical Society of Japan 1999-04, Vol.68 (4), p.1208-1215 |
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container_end_page | 1215 |
container_issue | 4 |
container_start_page | 1208 |
container_title | Journal of the Physical Society of Japan |
container_volume | 68 |
creator | YAMAMOTO, K IKUTA, N |
description | A rigorous procedure of the Monte-Carlo simulation for the motion of ions in gases under the electric fields is developed. This procedure is applicable for the ions having arbitrary collision frequencies dependent on the relative speed referred to the gas particles. Test calculations are performed in a model gas consisting of rigid sphere particles at the temperature of 300, K for three ion-neutral mass ratios. The data in good agreement with the corresponding theoretical values under zero field and with the FTI data at several values of reduced electric field verify the validity of this procedure. Fundamental properties of the ion motion in thermal gases are also discussed in relation with the mass ratios. |
doi_str_mv | 10.1143/jpsj.68.1208 |
format | article |
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This procedure is applicable for the ions having arbitrary collision frequencies dependent on the relative speed referred to the gas particles. Test calculations are performed in a model gas consisting of rigid sphere particles at the temperature of 300, K for three ion-neutral mass ratios. The data in good agreement with the corresponding theoretical values under zero field and with the FTI data at several values of reduced electric field verify the validity of this procedure. 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source | American Institute of Physics:Jisc Collections:Transitional Journals Agreement 2021-23 (Reading list) |
subjects | Atom, molecule, and ion scattering Condensed matter: structure, mechanical and thermal properties Exact sciences and technology Kinetic and transport theory of gases Other methods of structure determination Physics Physics of gases Physics of gases, plasmas and electric discharges Structure of solids and liquids crystallography Viscosity, diffusion and thermal conductivity |
title | A rigorous Monte-Carlo simulation procedure for ion transport properties in thermal gases |
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