Cavity spin optodynamics
arXiv:1005.3853 · doi:10.1103/PhysRevA.82.041804
Abstract
The dynamics of a large quantum spin coupled parametrically to an optical resonator is treated in analogy with the motion of a cantilever in cavity optomechanics. New spin optodynamic phenonmena are predicted, such as cavity-spin bistability, optodynamic spin-precession frequency shifts, coherent amplification and damping of spin, and the spin optodynamic squeezing of light.
4 pages, 3 figures
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Cited by in corpus (30)
- Cavity Optomechanics
- Spinor Bose-Einstein condensates
- Cold atoms in cavity-generated dynamical optical potentials
- Triple-resonant Brillouin light scattering in magneto-optical cavities
- Cavity-assisted quantum bath engineering
- Dynamics of Nonequilibrium Dicke Models
- Coupled Spin-Light dynamics in Cavity Optomagnonics
- Formation of a spin texture in a quantum gas coupled to a cavity
- Optomagnonics in Magnetic Solids
- REVIEW. Quantum optics with ultracold quantum gases: towards the full quantum regime of the light-matter interaction
- Coupling ultracold atoms to mechanical oscillators
- Steady-state entanglement of spatially separated qubits via quantum bath engineering
- Quantum state transfer between a Bose-Einstein condensate and an optomechanical mirror
- Negative-mass instability of the spin and motion of an atomic gas driven by optical cavity backaction
- Antiferromagnetic cavity optomagnonics
- Multimode Optomechanics as a Prototype of Mediated Interactions
- Classical stochastic measurement trajectories: Bosonic atomic gases in an optical cavity and quantum measurement backaction
- Quantum optomechanics of a Bose-Einstein Antiferromagnet
- Cavity cooling of an ensemble spin system
- Cavity-assisted measurement and coherent control of collective atomic spin oscillators
- Cavity Optomechanics of Topological Spin Textures in Magnetic Insulators
- Rotational cavity optomechanics
- Cavity-aided magnetic-resonance microscopy of atoms in optical lattices
- Enhancing squeezing and nonclassicality of light in atom-optomechanical systems
- Partitioning dysprosium's electronic spin to reveal entanglement in non-classical states
- Supersensitive estimation of the coupling rate in cavity optomechanics with an impurity-doped Bose-Einstein condensate
- Resonator-Assisted Quantum Bath Engineering of a Flux Qubit
- Collective dynamics of domain walls: an antiferromagnetic spin texture in an optical cavity
- External control of qubit-photon interaction and multi-qubit reset in a dissipative quantum network
- Cavity quantum electrodynamics of continuously monitored Bose-condensed atoms