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March 2, 2015Proceedings of the National Academy of Sciences360 citationsOpen Access

Dynamical phase transition in the open Dicke model

JKJens KlinderHKHans KeßlerMWMatthias Wolke

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Abstract

The Dicke model with a weak dissipation channel is realized by coupling a Bose-Einstein condensate to an optical cavity with ultranarrow bandwidth. We explore the dynamical critical properties of the Hepp-Lieb-Dicke phase transition by performing quenches across the phase boundary. We observe hysteresis in the transition between a homogeneous phase and a self-organized collective phase with an enclosed loop area showing power-law scaling with respect to the quench time, which suggests an interpretation within a general framework introduced by Kibble and Zurek. The observed hysteretic dynamics is well reproduced by numerically solving the mean-field equation derived from a generalized Dicke Hamiltonian. Our work promotes the understanding of nonequilibrium physics in open many-body systems with infinite range interactions.

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Cite This Study

Klinder et al. (2015) studied this question.

synapsesocial.com/papers/6a19449fb71d9c859388d3dfhttps://doi.org/10.1073/pnas.1417132112
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