Entropy of strongly coupled Yukawa fluids

被引:4
作者
Khrapak, S. A. [1 ]
机构
[1] Russian Acad Sci, Joint Inst High Temp, Moscow 125412, Russia
关键词
COMPLEX DUSTY PLASMAS; UNIVERSAL SCALING LAW; TRANSPORT-COEFFICIENTS; DISPERSION-RELATIONS; SELF-DIFFUSION; SYSTEMS;
D O I
10.1103/PhysRevE.110.034602
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
The entropy of strongly coupled Yukawa fluids is discussed from several perspectives. First, it is demonstrated that a vibrational paradigm of atomic dynamics in dense fluids can be used to obtain a simple and accurate estimate of the entropy without any adjustable parameters. Second, it is explained why a quasiuniversal value of the excess entropy of simple fluids at the freezing point should be expected, and it is demonstrated that a remaining very weak dependence of the freezing point entropy on the screening parameter in the Yukawa fluid can be described by a simple linear function. Third, a scaling of the excess entropy with the freezing temperature is examined, a modified form of the Rosenfeld-Tarazona scaling is put forward, and some consequences are briefly discussed. Fourth, the location of the Frenkel line on the phase diagram of Yukawa systems is discussed in terms of the excess entropy and compared with some predictions made in the literature. Fifth, the excess entropy scaling of the transport coefficients (self-diffusion, viscosity, and thermal conductivity) is reexamined using the contemporary datasets for the transport properties of Yukawa fluids. The results could be of particular interest in the context of complex (dusty) plasmas, colloidal suspensions, electrolytes, and other related systems with soft pairwise interactions.
引用
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页数:10
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共 93 条
[81]   Testing thermal conductivity models with equilibrium molecular dynamics simulations of the one-component plasma [J].
Scheiner, Brett ;
Baalrud, Scott David .
PHYSICAL REVIEW E, 2019, 100 (04)
[82]   Isomorph-based empirically modified hypernetted-chain approach for strongly coupled Yukawa one-component plasmas [J].
Tolias, P. ;
Castello, F. Lucco .
PHYSICS OF PLASMAS, 2019, 26 (04)
[83]   Soft mean spherical approximation for dusty plasma liquids: Level of accuracy and analytic expressions [J].
Tolias, P. ;
Ratynskaia, S. ;
de Angelis, U. .
PHYSICS OF PLASMAS, 2015, 22 (08)
[84]   Collective modes and thermodynamics of the liquid state [J].
Trachenko, K. ;
Brazhkin, V. V. .
REPORTS ON PROGRESS IN PHYSICS, 2016, 79 (01)
[85]   Universal scaling in complex (dusty) plasmas [J].
Vaulina, O ;
Khrapak, S ;
Morfill, G .
PHYSICAL REVIEW E, 2002, 66 (01)
[86]   Scaling law for the fluid-solid phase transition in Yukawa systems (Dusty plasmas) [J].
Vaulina, OS ;
Khrapak, SA .
JOURNAL OF EXPERIMENTAL AND THEORETICAL PHYSICS, 2000, 90 (02) :287-289
[87]   Invariants in the Yukawa system's thermodynamic phase diagram [J].
Veldhorst, Arno A. ;
Schroder, Thomas B. ;
Dyre, Jeppe C. .
PHYSICS OF PLASMAS, 2015, 22 (07)
[88]   SOME TOPICS IN THEORY OF FLUIDS [J].
WIDOM, B .
JOURNAL OF CHEMICAL PHYSICS, 1963, 39 (11) :2808-&
[89]   POTENTIAL-DISTRIBUTION THEORY AND THE STATISTICAL-MECHANICS OF FLUIDS [J].
WIDOM, B .
JOURNAL OF PHYSICAL CHEMISTRY, 1982, 86 (06) :869-872
[90]   Einstein Frequency Measurement for a Strongly Coupled Dusty Plasma [J].
Wong, Chun-Shang ;
Goree, John ;
Haralson, Zach .
IEEE TRANSACTIONS ON PLASMA SCIENCE, 2018, 46 (04) :763-767