The thermophysical properties (pressure, internal energy, conductivity, thermal conductivity, and thermal power) of molybdenum plasma at temperatures 10–60 kK and densities less than 2 g/cm3 have been calculated. The corresponding model has been developed on the basis of the chemical approach and relaxation time approximation. The approximations used in our model are valid under these conditions. A comparison with available experimental data on conductivity has shown good agreement in this area.

1.
V. E.
Fortov
and
I. T.
Yakubov
,
Physics of Nonideal Plasmas
(
Hemisphere Publishing
,
New York
,
1990
).
2.
W.
Ebeling
,
A.
Förster
,
V.
Fortov
,
V.
Gryaznov
, and
A.
Polishchuk
,
Thermophysical Properties of Hot Dense Plasmas
(
Teubner
,
Leipzig, Stuttgart
,
1991
).
3.
M. V.
Beznogov
,
A. Y.
Potekhin
, and
D. G.
Yakovlev
,
Mon. Not. R. Astron. Soc.
459
,
1569
(
2016
).
4.
M. E.
Povarnitsyn
,
V. B.
Fokin
,
P. R.
Levashov
, and
T. E.
Itina
,
Phys. Rev. B
92
,
174104
(
2015
);
N. E.
Andreev
,
M. E.
Povarnitsyn
,
M. E.
Veysman
,
A. Ya.
Faenov
,
P. R.
Levashov
,
K. V.
Khishchenko
,
N. A.
Pikuz
,
A. I.
Magunov
,
O. N.
Rosmej
,
A.
Blazevic
,
A.
Pelka
,
G.
Shaumann
,
M.
Schollmeier
, and
M.
Roth
,
Laser Part. Beams
33
,
541
(
2015
);
D. V.
Minakov
and
P. R.
Levashov
,
Phys. Rev. B
92
,
224102
(
2015
).
5.
M. V.
Zhernokletov
,
A. B.
Medvedev
, and
G. V.
Simakov
,
Chem. Phys. Rep.
14
,
49
(
1995
);
M. V.
Zhernokletov
,
G. V.
Simakov
,
Yu. N.
Sutulov
, and
R. F.
Trunin
,
High Temperature
33
,
40
(
1995
);
A. N.
Emelyanov
,
A. A.
Pyalling
, and
V. Ya.
Ternovoi
,
Int. J. Thermophys.
26
,
1985
(
2005
).
6.
V. K.
Gryaznov
,
V. E.
Fortov
,
M. V.
Zhernokletov
,
G. V.
Simakov
,
R. F.
Trunin
,
L. I.
Trusov
, and
I. L.
Iosilevski
,
JETP
87
,
678
(
1998
).
7.
V. E.
Fortov
and
I. V.
Lomonosov
,
Phys.-Usp.
57
,
219
(
2014
).
8.
I. V.
Lomonosov
and
V. K.
Gryaznov
,
Contrib. Plasma Phys.
56
,
302
(
2016
).
9.
A. W.
DeSilva
and
J. D.
Katsouros
,
Phys. Rev. E
57
,
5945
(
1998
);
A. W.
DeSilva
and
A. D.
Rakhel
,
Contrib. Plasma Phys.
45
,
237
(
2005
);
A. M.
Kondratyev
,
V. N.
Korobenko
, and
A. D.
Rakhel
,
Carbon
100
,
537
(
2016
).
10.
A. W.
DeSilva
and
G. B.
Vunni
,
Phys. Rev. E
83
,
037402
(
2011
).
11.
M.
Desjarlais
,
F.
Graziani
,
R.
Redmer
, and
S.
Trickey
,
Frontiers and Challenges in Warm Dense Matter
,
Lecture Notes in Computational Science and Engineering
(
Springer
,
2014
).
12.
J.
Clerouin
,
P.
Noiret
,
P.
Blottiau
,
V.
Recoules
,
B.
Siberchicot
,
P.
Renaudin
,
C.
Blancard
,
G.
Faussurier
,
B.
Holst
, and
C. E.
Starrett
,
Phys. Plasmas
19
,
082702
(
2012
);
J.
Clerouin
,
P.
Noiret
,
V. N.
Korobenko
, and
A. D.
Rakhel
,
Phys. Rev. B
78
,
224203
(
2008
).
13.
A. E.
Mattsson
,
P. A.
Schultz
,
M. P.
Desjarlais
,
T. R.
Mattsson
, and
K.
Leung
,
Model. Simul. Mater. Sci. Eng.
13
,
R1
(
2005
);
G.
Norman
and
I.
Saitov
,
Phys. Rev. E
94
,
043202
(
2016
).
[PubMed]
14.
D. V.
Knyazev
and
P. R.
Levashov
,
Phys. Plasmas
21
,
073302
(
2014
);
D. V.
Knyazev
and
P. R.
Levashov
,
Phys. Plasmas
23
,
102708
(
2015
).
15.
M.
French
and
Th. R.
Mattsson
,
Phys. Rev. B
90
,
165113
(
2014
).
16.
A. F.
Nikiforov
,
V. G.
Novikov
, and
V. B.
Uvarov
,
Quantum- Statistical Models of Hot Dense Matter and Methods for Computation Opacity and Equation of State
(
Birkhauser
,
Boston
,
2005
).
17.
A. A.
Ovechkin
,
P. A.
Loboda
, and
A. L.
Falkov
,
High Energy Density Phys.
20
,
38
(
2016
).
18.
S.
Dyachkov
and
P.
Levashov
,
Phys. Plasmas
21
,
052702
(
2014
);
S.
Dyachkov
,
P.
Levashov
, and
D. V.
Minakov
,
Phys. Plasmas
23
,
112705
(
2016
).
19.
S.
Kuhlbrodt
and
R.
Redmer
,
Phys. Rev. E
62
,
7191
(
2000
);
S.
Kuhlbrodt
,
B.
Holst
, and
R.
Redmer
,
Contrib. Plasma Phys.
45
,
73
(
2005
);
20.
A. L.
Khomkin
and
A. S.
Shumikhin
,
High Temp.
52
,
328
(
2014
);
A. L.
Khomkin
and
A. S.
Shumikhin
,
High Temp.
50
,
307
(
2012
);
A. L.
Khomkin
and
A. S.
Shumikhin
,
High Temp.
53
,
609
(
2015
).
21.
E. M.
Apfelbaum
,
Phys. Rev. E
84
,
066403
(
2011
);
E. M.
Apfelbaum
,
Contrib. Plasma Phys.
51
,
395
(
2011
);
E. M.
Apfelbaum
,
Controlled Plasma Phys.
52
,
41
(
2012
);
E. M.
Apfelbaum
,
Controlled Plasma Phys.
53
,
317
(
2013
);
E. M.
Apfelbaum
,
Controlled Plasma Phys.
56
,
176
(
2016
);
22.
E. M.
Apfelbaum
,
Phys. Plasmas
22
,
092703
(
2015
).
23.
Y. T.
Lee
and
R. M.
More
,
Phys. Fluids
27
,
1273
(
1984
).
24.
E. M.
Lifshitz
and
L. P.
Pitaevskii
,
Physical Kinetics. Course of Theoretical Physics
(
Pergamon
,
Oxford
,
2002
), Vol. 10.
25.
J. R.
Lombardi
and
B.
Davis
,
Chem. Rev.
102
,
2431
(
2002
);
[PubMed]
R. P.
Diez
and
J. A.
Alonso
,
J. Chem. Phys.
123
,
134313
(
2005
).
[PubMed]
26.
L. D.
Landau
and
E. M.
Lifshitz
,
Statistical Physics. Course of Theoretical Physics
(
Pergamon
,
Oxford
,
2002
), Vol. 5.
27.
A. Y.
Potekhin
,
G.
Chabrier
, and
F. J.
Rogers
,
Phys. Rev. E
79
,
016411
(
2009
);
A. Y.
Potekhin
,
G.
Chabrier
,
A. I.
Chugunov
,
H. E.
DeWitt
, and
F. J.
Rogers
,
Phys. Rev. E
80
,
047401
(
2009
).
28.
A. A.
Likal'ter
,
Sov. Phys. JETP
29
,
133
(
1969
), see http://jetp.ac.ru/cgi-bin/dn/e_029_01_0133.pdf.
29.
B. M.
Smirnov
,
Cluster Ions and Van Der Waals Molecules
(
Gordon and Breach Science Publishers
,
Philadelphia
,
1992
).
30.
T. L.
Hill
,
Statistical Mechanics
(
McGraw-Hill
,
New York
,
1956
).
31.
D. G.
Hummer
and
D.
Mihalas
,
Astrophys. J.
331
,
794
(
1988
).
32.
See http://physics.nist.gov/PhysRefData/ASD/levels_form.html for the levels of separate ions and atoms, necessary to calculate the internal partition functions Qs, described in the paragraph after Eq. (4).
33.
M. W. C.
Dharma-wardana
,
Phys. Rev. E
73
,
036401
(
2006
).
34.
J. R.
Adams
,
H.
Reinholz
,
R.
Redmer
,
V. B.
Mintsev
,
N. S.
Shilkin
, and
V. K.
Gryaznov
,
Phys. Rev. E
76
,
036405
(
2007
);
J. R.
Adams
,
N. S.
Shilkin
,
V. E.
Fortov
,
V. K.
Gryaznov
,
V. B.
Mintsev
,
R.
Redmer
,
H.
Reinholz
, and
G.
Röpke
,
Phys. Plasmas
14
,
062303
(
2007
).
35.
L.
Spitzer
and
R.
Härm
,
Phys. Rev.
89
,
977
(
1953
).
36.
W. A.
Stygar
,
G. A.
Gerdin
, and
D. L.
Fehl
,
Phys. Rev. E
66
,
046417
(
2002
).
37.
F. J. V.
Van Odenhoven
and
P. P. J. M.
Schram
,
Physica A
133
,
74
(
1984
).
38.
H.
Reinholz
,
G.
Röpke
,
S.
Rosmej
, and
R.
Redmer
,
Phys. Rev. E
91
,
043105
(
2015
).
39.
S. A.
Khrapak
,
Phys. Plasmas
20
,
054501
(
2013
).
40.
G.
Dimonte
and
J.
Daligault
,
Phys. Rev. Lett.
101
,
135001
(
2008
).
41.
E. O.
Shalenov
,
K. N.
Dzhumagulova
, and
T. S.
Ramazanov
,
Phys. Plasmas
24
,
012101
(
2017
).
42.
S. D.
Tošič
,
V. I.
Kelemen
,
D.
Ševič
,
D. M.
Filipovič
,
E. Yu.
Remeta
, and
B. P.
Marinovič
,
Nucl. Instrum. Methods Phys. Res. B
267
,
283
(
2009
);
E. Yu.
Remeta
and
V. I.
Kelemen
,
J. Phys. B
43
,
045202
(
2010
);
V.
Gedeon
,
S.
Gedeon
,
V.
Lazur
,
E.
Nagy
,
O.
Zatsarinny
, and
K.
Bartschat
,
Phys. Rev. A
85
,
022711
(
2012
);
K.
Bartschat
,
J. Phys. D: Appl. Phys.
46
,
334004
(
2013
).
43.
A.
Jablonski
,
F.
Salvat
, and
C. J.
Powel
,
J. Phys. Chem. Ref. Data
33
,
409
(
2004
).
44.
Z.
Rouabah
,
N.
Bouarissa
, and
C.
Champion
,
Phys. Lett. A
373
,
282
(
2009
).
45.
F.
Calogero
,
Variable Phase Approach to Potential Scattering
(
Academic Press
,
New-York
,
1967
).
46.
Svoistva elementov. Spravochnik (The properties of elements. Reference book)
, edited by
M. E.
Dritz
(
Moscow
,
Metallurgy
,
1985
) (in Russian).
You do not currently have access to this content.