Parametrically driven-dissipative three-level Dicke model
arXiv:2108.10877 · doi:10.1103/PhysRevA.104.063705
Abstract
We investigate the three-level Dicke model, which describes a fundamental class of light-matter systems. We determine the phase diagram in the presence of dissipation, which we assume to derive from photon loss. Utilizing both analytical and numerical methods we characterize the incommensurate time crystalline, light-induced, and light-enhanced superradiant states in the phase diagram for the parametrically driven system. As a primary application, we demonstrate that a shaken atom-cavity system is naturally approximated via a parametrically driven-dissipative three-level Dicke model.
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Cited by in corpus (20)
- Three-level Dicke quantum battery
- Realization of a periodically driven open three-level Dicke model
- Dissipation-engineered family of nearly dark states in many-body cavity-atom systems
- Dissipative time crystal in an atom-cavity system: Influence of trap and competing interactions
- Collective dynamics of the unbalanced three-level Dicke model
- Nonequilibrium transition between dissipative time crystals
- Realizing limit cycles in dissipative bosonic systems
- Crafting the dynamical structure of synchronization by harnessing bosonic multilevel cavity QED
- Bridging closed and dissipative discrete time crystals in spin systems with infinite-range interactions
- Condensate formation in a dark state of a driven atom-cavity system
- Observation of a phase transition from a continuous to a discrete time crystal
- Exploring nonlinear dynamics in periodically driven time crystal: from synchronized to chaotic motion
- Tricritical Dicke model with and without dissipation
- Theory of parametric resonance for discrete time crystals in fully-connected spin-cavity systems
- Strong single-photon to two-photon bundles emission in spin-1 Jaynes-Cummings model
- Dynamics of spin-momentum entanglement from superradiant phase transitions
- Exploring global symmetry-breaking superradiant phase via phase competition
- Controlled bit-flip of period-doubling and discrete time crystalline states in open systems
- Floquet Engineering of Non-Equilibrium Superradiance
- Robustness of the Floquet-assisted superradiant phase and possible laser operation