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Dissipation-Induced Luttinger Liquid Correlations in a One-Dimensional Fermi Gas.

作者信息

Bácsi Ádám, Moca Cătălin Paşcu, Dóra Balázs

机构信息

MTA-BME Lendület Topology and Correlation Research Group, Budapest University of Technology and Economics, 1521 Budapest, Hungary.

Department of Mathematics and Computational Sciences, Széchenyi István University, 9026 Győr, Hungary.

出版信息

Phys Rev Lett. 2020 Apr 3;124(13):136401. doi: 10.1103/PhysRevLett.124.136401.

Abstract

We study a one-dimensional Fermi gas in the presence of dissipative coupling to environment through the Lindblad equation. The dissipation involves energy exchange with the environment and favours the relaxation of electrons to excitations. After switching on the dissipation, the system approaches a steady state, which is described by a generalized Gibbs ensemble. The fermionic single particle density matrix resembles deceivingly to that in a hermitian interaction quench. It decays inversely with the distance for short times due to the fermionic correlations in the initial state, which changes into a noninteger power law decay for late times, representing dissipation-induced Luttinger liquid behavior. However, the crossover between the two regions occurs due to dissipation-induced damping, and is unrelated to the propagation of excitations. The velocity of information spreading is set by the dissipative coupling, and differs significantly from the original sound velocity. The thermodynamic entropy grows as -t ln t initially, and saturates to an extensive value. Our results can be tested experimentally in one-dimensional Dirac systems.

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