Thermodynamics and dynamics of atomic self-organization in an optical cavity
arXiv:1508.06606 · doi:10.1103/PhysRevA.92.063808
Abstract
Pattern formation of atoms in high-finesse optical resonators results from the mechanical forces of light associated with superradiant scattering into the cavity mode. It occurs when the laser intensity exceeds a threshold value, such that the pumping processes counteract the losses. We consider atoms driven by a laser and coupling with a mode of a standing-wave cavity and describe their dynamics with a Fokker-Planck equation, in which the atomic motion is semiclassical but the cavity field is a full quantum variable. The asymptotic state of the atoms is a thermal state, whose temperature is solely controlled by the detuning between the laser and the cavity frequency and by the cavity loss rate. From this result we derive the free energy and show that in the thermodynamic limit selforganization is a second-order phase transition. The order parameter is the field inside the resonator, to which one can associate a magnetization in analogy to ferromagnetism, the control field is the laser intensity, however the steady state is intrinsically out-of-equilibrium. In the symmetry-broken phase quantum noise induces jumps of the spatial density between two ordered patterns: We characterize the statistical properties of this temporal behaviour at steady state and show that the thermodynamic properties of the system can be extracted by detecting the light at the cavity output. The results of our analysis are in full agreement with previous studies, extend them by deriving a self-consistent theory which is valid also when the cavity field is in the shot-noise limit, and elucidate the nature of the selforganization transition.
21 pages, 15 figures
References in corpus (17)
- Statistical mechanics and dynamics of solvable models with long-range interactions
- Cold atoms in cavity-generated dynamical optical potentials
- Roton-type mode softening in a quantum gas with cavity-mediated long-range interactions
- Cavity Nonlinear Optics at Low Photon Numbers from Collective Atomic Motion
- Keldysh approach for non-equilibrium phase transitions in quantum optics: beyond the Dicke model in optical cavities
- Probing quantum phases of ultracold atoms in optical lattices by transmission spectra in cavity QED
- Mott insulator states of ultracold atoms in optical resonators
- Self-organization of atoms in a cavity field: threshold, bistability and scaling laws
- Self-organised Limit-Cycles, Chaos and Phase-Slippage with a Superfluid inside an Optical Resonator
- Measuring the dynamic structure factor of a quantum gas undergoing a structural phase transition
- Dynamical Coupling between a Bose-Einstein Condensate and a Cavity Optical Lattice
- Self-Organization Threshold Scaling for Thermal Atoms Coupled to a Cavity
- Facilitated spin models of dissipative quantum glasses
- Prethermalization of atoms due to photon-mediated long-range interactions
- QND measurements and state preparation in quantum gases by light detection
- Quantum kinetics of ultracold fermions coupled to an optical resonator
- Homodyne detection of matter-wave fields (shortened)
Cited by in corpus (23)
- Spinor self-ordering of a quantum gas in a cavity
- Out-of-equilibrium dynamics of quantum many-body systems with long-range interactions
- Quenches across the self-organization transition in multimode cavities
- Non-Hermitian Dynamics in the Quantum Zeno Limit
- Dissipation-assisted prethermalization in long-range interacting atomic ensembles
- Critical relaxation with overdamped quasiparticles in open quantum systems
- Mean-field theory of atomic self-organization in optical cavities
- Quantum measurement-induced antiferromagnetic order and density modulations in ultracold Fermi gases in optical lattices
- Semiclassical theory of synchronization-assisted cooling
- Self-Pinning Transition of a Tonks-Girardeau Gas in a Bose-Einstein Condensate
- Ergodicity breaking with long range cavity induced quasiperiodic interactions
- Phases of cold atoms interacting via photon-mediated long-range forces
- Ensemble inequivalence in long-range quantum systems
- Balancing long-range interactions and quantum pressure: solitons in the HMF model
- Spin and density self-ordering in dynamic polarization gradients fields
- Optomechanical self-organization in a mesoscopic atom array
- Self-ordering and cavity cooling using a train of ultrashort pulses
- Impact of quantum noise on phase transitions in an atom-cavity system with limit cycles
- Spin self-organization in an optical cavity facilitated by inhomogeneous broadening
- Dynamical phases of a BEC in a bad optical cavity at optomechanical resonance
- Chiral thermodynamics in tailored chiral optical environments
- Master Equation for a Quantum Gas of Polarizable Particles in Cavities
- Ensemble Inequivalence in Long-Range Quantum Spin Systems