The driven Dicke Model: time-dependent mean field and quantum fluctuations in a non-equilibrium quantum many-body system
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We establish a new theoretical framework, based on a time-dependent mean field approach, to address the dynamics of the driven Dicke model. The joint evolution of both mean fields and quantum fluctuations gives rise to a rich and generally non-linear dynamics, featuring a normal (stable) regime and an unstable, super-radiant one. Various dynamical phenomena emerge, such as the spontaneous amplification of vacuum fluctuations, or the appearance of special points around which the mean-field amplitudes rotate during driven time evolution, signalling a dynamical symmetry breaking. We also provide a characterization of the driving-induced photon production in terms of the work done by the driving agent, of the non-adiabaticity of the process and of the entanglement generated between the atomic system and the cavity mode.
Publication details
- DOI
- 10.48550/arxiv.1608.05049
- OpenAlex
- W2514946208
- Document type
- preprint
- Language
- EN
- Source
- arXiv (Cornell University)
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