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- W2316911298 abstract "A link to the Dicke-model type quantum phase transition (QPT) is established by considering a time-dependent driving of the atom-field coupling and nonlinear atom-photon interaction as well, which make a notable impact on the ground-state properties. Motivated by the recent pioneer experiment [K. Baumann, C. Guerlin, F. Brennecke, and T. Esslinger, Nature (London) 464, 1301 (2010)], in this paper we demonstrate theoretically a rich multistable structure and nonequilibrium QPTs in terms of the Floquet theory and generalized rotating wave approximation. The positive nonlinear interaction does not lead to the change of the order-parameter curve except for a slight shift of the critical point. However, an additional full atomic population of the excited state is generated by the negative interaction resulting in the coexistence region of normal and superradiant phases. When both driving and nonlinear interaction exist the single order-parameter curve of the superradiant phase spreads out and a wide area of multiple local minima emerges in addition." @default.
- W2316911298 created "2016-06-24" @default.
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- W2316911298 date "2013-05-29" @default.
- W2316911298 modified "2023-09-25" @default.
- W2316911298 title "Nonequilibrium quantum phase transition of Bose-Einstein condensates in an optical cavity" @default.
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- W2316911298 doi "https://doi.org/10.1103/physreva.87.053623" @default.
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