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Volume 15, Issue 4
Computer Simulation of Two Component Dense Plasma by Molecular Dynamics Method

Zh. A. Moldabekov & T. S. Ramazanov

Commun. Comput. Phys., 15 (2014), pp. 1159-1166.

Published online: 2014-04

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  • Abstract

In the present work two component dense semiclassical plasma of protons and electrons is considered. Microscopic and electrodynamic properties of the plasma by molecular dynamic simulation are investigated. For these purposes semiclassical interparticle potential which takes into account quantum mechanical diffraction and symmetry effects is used. The considered range of density of plasma is n=1022cm−3 to n=1024cm−3. Fluctuations and dynamic dielectric functions were calculated using velocity autocorrelation functions.

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@Article{CiCP-15-1159, author = {}, title = {Computer Simulation of Two Component Dense Plasma by Molecular Dynamics Method}, journal = {Communications in Computational Physics}, year = {2014}, volume = {15}, number = {4}, pages = {1159--1166}, abstract = {

In the present work two component dense semiclassical plasma of protons and electrons is considered. Microscopic and electrodynamic properties of the plasma by molecular dynamic simulation are investigated. For these purposes semiclassical interparticle potential which takes into account quantum mechanical diffraction and symmetry effects is used. The considered range of density of plasma is n=1022cm−3 to n=1024cm−3. Fluctuations and dynamic dielectric functions were calculated using velocity autocorrelation functions.

}, issn = {1991-7120}, doi = {https://doi.org/10.4208/cicp.140313.240513s}, url = {http://global-sci.org/intro/article_detail/cicp/7132.html} }
TY - JOUR T1 - Computer Simulation of Two Component Dense Plasma by Molecular Dynamics Method JO - Communications in Computational Physics VL - 4 SP - 1159 EP - 1166 PY - 2014 DA - 2014/04 SN - 15 DO - http://doi.org/10.4208/cicp.140313.240513s UR - https://global-sci.org/intro/article_detail/cicp/7132.html KW - AB -

In the present work two component dense semiclassical plasma of protons and electrons is considered. Microscopic and electrodynamic properties of the plasma by molecular dynamic simulation are investigated. For these purposes semiclassical interparticle potential which takes into account quantum mechanical diffraction and symmetry effects is used. The considered range of density of plasma is n=1022cm−3 to n=1024cm−3. Fluctuations and dynamic dielectric functions were calculated using velocity autocorrelation functions.

Zh. A. Moldabekov & T. S. Ramazanov. (2020). Computer Simulation of Two Component Dense Plasma by Molecular Dynamics Method. Communications in Computational Physics. 15 (4). 1159-1166. doi:10.4208/cicp.140313.240513s
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