We introduce suitable Langevin thermostats which are able to control both the temperature and the chemical potential of a one-dimensional lattice of nonlinear Schrödinger oscillators. The resulting nonequilibrium stationary states are then investigated in the limit of low temperatures and large particle densities, where the dynamics can be mapped onto that of a coupled-rotor chain with an external torque. As a result, an effective kinetic definition of temperature can be introduced and compared with the general microcanonical (global) definition.

Off-equilibrium Langevin dynamics of the discrete nonlinear Schrödinger chain / Stefano Iubini;Stefano Lepri;Roberto Livi;Antonio Politi. - In: JOURNAL OF STATISTICAL MECHANICS: THEORY AND EXPERIMENT. - ISSN 1742-5468. - STAMPA. - 2013:(2013), pp. P08017/1-P08017/19. [10.1088/1742-5468/2013/08/P08017]

Off-equilibrium Langevin dynamics of the discrete nonlinear Schrödinger chain

IUBINI, STEFANO;LIVI, ROBERTO;
2013

Abstract

We introduce suitable Langevin thermostats which are able to control both the temperature and the chemical potential of a one-dimensional lattice of nonlinear Schrödinger oscillators. The resulting nonequilibrium stationary states are then investigated in the limit of low temperatures and large particle densities, where the dynamics can be mapped onto that of a coupled-rotor chain with an external torque. As a result, an effective kinetic definition of temperature can be introduced and compared with the general microcanonical (global) definition.
2013
2013
P08017/1
P08017/19
Stefano Iubini;Stefano Lepri;Roberto Livi;Antonio Politi
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/848898
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