Affiliation:
1. National Institute for Nuclear Physics
2. University of Calabria
3. International School for Advanced Studies
Abstract
We investigate the dynamics brought on by an impulse perturbation in two infinite-range quantum Ising models coupled to each other and to a dissipative bath. We show that, if dissipation is faster the higher the excitation energy, the pulse perturbation cools down the low-energy sector of the system, at the expense of the high-energy one, eventually stabilising a transient symmetry-broken state at temperatures higher than the equilibrium critical one.
Such non-thermal quasi-steady state may survive for quite a long time after the pulse, if the latter is properly tailored.
Funder
European Research Council
Subject
General Physics and Astronomy
Cited by
7 articles.
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