arXiv Analytics

Sign in

arXiv:2006.16088 [cond-mat.stat-mech]AbstractReferencesReviewsResources

Thermalization, prethermalization and impact of the temperature in the quench dynamics of two $unequal$ Luttinger liquids

Paola Ruggiero, Laura Foini, Thierry Giamarchi

Published 2020-06-29Version 1

We study the effect of a quantum quench between two tunnel coupled Tomonaga-Luttinger liquids (TLLs) with different speed of sound and interaction parameter. The quench dynamics is induced by switching off the tunnelling and letting the two systems evolve independently. We fully diagonalize the problem within a quadratic approximation for the initial tunnelling. Both the case of zero and finite temperature in the initial state are considered. We focus on correlation functions associated with the antisymmetric and symmetric combinations of the two TLLs (relevant for interference measurements), which turn out to be coupled due to the asymmetry in the two systems' Hamiltonians. The presence of different speeds of sound leads to multiple lightcones separating different decaying regimes. In particular, in the large time limit, we are able to identify a prethermal regime where the two-point correlation functions of symmetric and antisymmetric sector can be characterized by two emerging effective temperatures, eventually drifting towards a thermal regime, where these two correlators become time independent and are characterized by a unique effective temperature. If the initial state is at equilibrium at non-zero temperature $T_0$, all the effective temperatures acquire a linear correction in $T_0$, leading to faster decay of the correlation functions. Such effects can play a crucial role for the correct description of currently running cold atoms experiments.

Related articles: Most relevant | Search more
Quantum Quenches to a Critical Point in One Dimension: some further results
Effective temperatures in inhomogeneous passive and active bidimensional Brownian particle systems
arXiv:cond-mat/0412088 (Published 2004-12-06)
Effective temperature in the quench of coarsening systems to and below $T_C$