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Ionization Potential Depression in Hot Dense Plasmas Through a Pure Classical Model
Calisti, A. ;
Ferri
,
S
. ; Talin, B.
Contributions to plasma physics (1988), 2015-05, Vol.55 (5), p.360-365
[Peer Reviewed Journal]
Berlin: WILEY-VCH Verlag
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Title:
Ionization Potential Depression in Hot Dense Plasmas Through a Pure Classical Model
Author:
Calisti, A.
;
Ferri
,
S
.
;
Talin, B.
Subjects:
Charged particles
;
Classical molecular dynamics
;
Density
;
Depression
;
ionization potential depression
;
Ionization potentials
;
Mathematical models
;
multi component plasma
;
Physics
;
Plasma (physics)
;
Potential energy
;
Sampling
Is Part Of:
Contributions to plasma physics (1988), 2015-05, Vol.55 (5), p.360-365
Notes:
ark:/67375/WNG-BH7PQ3TL-J
istex:5571993DE7650B9FFBADEDCE7F784C8631F44969
ArticleID:CTPP201400087
ObjectType-Article-1
SourceType-Scholarly Journals-1
ObjectType-Feature-2
content type line 23
Description:
The ionization potential of an ion embedded in a plasma, lowered due to the whole of the charged particles (ions and electrons) interacting with this ion, is the so‐called plasma effect. A numerical plasma model based on classical molecular dynamics has been developed recently. It is capable to describe a neutral plasma at equilibrium involving ions of various charge states of the same atom together with electrons. This code is used here to investigate the ionization potential depression (IPD). The study of the IPD is illustrated and discussed for aluminum plasmas at mid and solid density and electron temperatures varying from 50eV to 190eV. The method relies on a sampling of the total potential energy of the electron located at an ion being ionized. The potential energy of such electron results from all of the interacting charged particles interacting with it. (© 2015 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)
Publisher:
Berlin: WILEY-VCH Verlag
Language:
English
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