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Publications in Math-Net.Ru
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Classical equilibrium generalized hydrodynamic correlation Green's functions for a system of hard balls with weak interaction
TMF, 89:3 (1991), 446–464
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Construction of equations for classical equilibrium correlation Green's functions on the basis of kinetic equations. II
TMF, 89:1 (1991), 132–150
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Construction of equations for classical equilibrium correlation Green's functions on the basis of kinetic equations. I
TMF, 88:2 (1991), 225–246
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Classical equilibrium generalized hydrodynamic correlation Green's functions. IV
TMF, 86:3 (1991), 460–473
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Classical equilibrium generalized hydrodynamic correlation Green's functions
III. Density–density correlation Green's function
TMF, 85:1 (1990), 102–114
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On the problem of the ergodic constant in the theory of classical Green's functions
TMF, 84:3 (1990), 459–473
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Classical equilibrium generalized hydrodynamic correlation Green's functions.
II. Transverse autocorrelation Green's function
TMF, 83:2 (1990), 311–319
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Classical equilibrium generalized hydrodynamic correlation Green's functions. I
TMF, 82:3 (1990), 450–465
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Construction of generalized hydrodynamic asymptotics for classical equilibrium correlation Green's functions on the basis of a Boltzmann kinetic equation
TMF, 82:2 (1990), 287–303
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Construction of hydrodynamic asymptotics of the classical equilibrium correlation Green's functions by means of the Boltzmann equation
TMF, 82:1 (1990), 117–132
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Construction of linear response theory for classical systems by the nonequilibrium statistical operator method
TMF, 80:3 (1989), 452–460
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Construction of classical systems of equations and macroscopic asymptotics for the equilibium correlation and Green's functions by means of the nonequilibrium statistical operator method
TMF, 80:1 (1989), 118–137
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Construction of theory of a binary mixture of nonideal bose gases (or liquids) by the method of collective variables. III. Perturbation theory
TMF, 75:1 (1988), 137–147
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Construction of theory of a binary mixture of nonideal bose gases (or liquids) by the method of collective variables. II. The $s$-particle density matrices at $T=0$. Variational calculation of the ground-state energy and density-density correlation functions
TMF, 71:1 (1987), 114–128
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Construction of theory of a binary mixture of nonideal Bose gases (or liquids) by the method of collective variables I. Wave function and ground-state energy, excitation spectrum, correlation functions, thermodynamics of the system at $T=0$
TMF, 66:1 (1986), 121–145
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Application of the method of ordered operators in the theory of liquid metals
TMF, 59:2 (1984), 276–292
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Theory of single-mode laser radiation for Dicke type model systems
TMF, 58:1 (1984), 109–120
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Derivation of asymptotically exact equations for the radiation in model systems of Dicke type
TMF, 56:3 (1983), 418–431
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Use of the method of ordered operators in the theory of laser systems. II. Construction of a theory of laser radiation for Dicke models
TMF, 54:2 (1983), 277–288
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Use of the method of ordered operators in the theory of laser systems. Derivation of asymptotically exact equations for radiation. I
TMF, 54:1 (1983), 130–146
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Asymptotically exact equations for mean values in the theory of laser systems
Dokl. Akad. Nauk SSSR, 265:2 (1982), 314–317
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Some questions in polaron theory
TMF, 50:2 (1982), 301–307
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Construction of a kinetic equation for a quantum dynamical system interacting with a phonon field by the method of ordered operators
TMF, 48:1 (1981), 89–105
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Construction of kinetic equations for nonequilibrium quantum systems
TMF, 20:2 (1974), 250–264
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Construction of generalized normal solutions of kinetic equations for a mixture of gases
TMF, 18:1 (1974), 130–137
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