Extended hydrodynamic approach to quantum-classical nonequilibrium evolution. I. Theory

被引:24
作者
Bousquet, David [1 ]
Hughes, Keith H. [2 ]
Micha, David A. [3 ]
Burghardt, Irene [1 ]
机构
[1] Ecole Normale Super, Dept Chim, F-75231 Paris 05, France
[2] Bangor Univ, Sch Chem, Bangor LL57 2UW, Gwynedd, Wales
[3] Univ Florida, Quantum Theory Project, Gainesville, FL 32606 USA
关键词
DENSITY-FUNCTIONAL THEORY; MOLECULAR-DYNAMICS; NONADIABATIC DYNAMICS; MOMENT APPROACH; SYSTEMS; EQUILIBRIUM; FORMULATION; SOLVATION; EQUATION; PHYSICS;
D O I
10.1063/1.3553174
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A mixed quantum-classical formulation is developed for a quantum subsystem in strong interaction with an N-particle environment, to be treated as classical in the framework of a hydrodynamic representation. Starting from the quantum Liouville equation for the N-particle distribution and the corresponding reduced single-particle distribution, exact quantum hydrodynamic equations are obtained for the momentum moments of the single-particle distribution coupled to a discretized quantum subsystem. The quantum-classical limit is subsequently taken and the resulting hierarchy of equations is further approximated by various closure schemes. These include, in particular, (i) a Grad-Hermite-type closure, (ii) a Gaussian closure at the level of a quantum-classical local Maxwellian distribution, and (iii) a dynamical density functional theory approximation by which the hydrodynamic pressure term is replaced by a free energy functional derivative. The latter limit yields a mixed quantum-classical formulation which has previously been introduced by I. Burghardt and B. Bagchi, Chem. Phys. 134, 343 (2006). (C) 2011 American Institute of Physics. [doi:10.1063/1.3553174]
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页数:15
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