Nonlinear Floquet dynamics of spinor condensates in an optical cavity: Cavity-amplified parametric resonance
arXiv:1909.13191 · doi:10.1103/PhysRevA.100.033617
Abstract
We investigate Floquet dynamics of a cavity-spinor Bose-Einstein condensate coupling system via periodic modulation of the cavity pump laser. Parametric resonances are predicted and we show that due to cavity feedback-induced nonlinearity the spin oscillation can be amplified to all orders of resonance, thus facilitating its detection. Real-time observation on Floquet dynamics via cavity output is also discussed.
References in corpus (23)
- Cold atoms in cavity-generated dynamical optical potentials
- Periodically-driven quantum systems: Effective Hamiltonians and engineered gauge fields
- Deterministic entanglement generation from driving through quantum phase transitions
- Two-level systems driven by large-amplitude fields
- Spinor Dynamics in an Antiferromagnetic Spin-1 Condensate
- Mott insulator states of ultracold atoms in optical resonators
- Coherent collisional spin dynamics in optical lattices
- Experimental Realization of Quantum-Resonance Ratchets
- Quantum Phase Transitions and Continuous Observation of Spinor Dynamics in an Antiferromagnetic Condensate
- Collective emission of matter-wave jets from driven Bose-Einstein condensates
- Quantum control and entanglement using periodic driving fields
- Rectified momentum transport for a kicked Bose-Einstein Condensate
- Magnetically tuned spin dynamics resonance
- Spinor condensates with a laser-induced quadratic Zeeman effect
- Nonlinearity induced destruction of resonant tunneling in the Wannier-Stark problem
- Quantum dissipative Rashba spin ratchets
- Hamiltonian ratchets with ultra-cold atoms
- Initial state dependence of a quantum-resonance ratchet
- Controlling Transport of Ultra-Cold Atoms in 1D Optical Lattices with Artificial Gauge Fields
- Collapse and revival in inter-band oscillations of a two-band Bose-Hubbard model
- Stückelberg-Interferometry with ultra-cold atoms
- Interplay between quantum dissipation and an in-plane magnetic field in the spin ratchet effect
- Topological spinor vortex matter on spherical surface induced by non-Abelian spin-orbital-angular-momentum coupling