The quantum ground state of self-organized atomic crystals in optical resonators
arXiv:1001.4827 · doi:10.1103/PhysRevA.81.043407
Abstract
Cold atoms, driven by a laser and simultaneously coupled to the quantum field of an optical resonator, can self-organize in periodic structures. These structures are supported by the optical lattice, which emerges from the laser light they scatter into the cavity mode, and form when the laser intensity exceeds a threshold value. We study theoretically the quantum ground state of these structures above the pump threshold of self-organization, by mapping the atomic dynamics of the self-organized crystal to a Bose-Hubbard model. We find that the quantum ground state of the self-organized structure can be the one of a Mott-insulator or a superfluid, depending on the pump strength of the driving laser. For very large pump strengths, where the intracavity intensity is maximum and one would expect a Mott-insulator state, we find intervals of parameters where the system is superfluid. These states could be realized in existing experimental setups.
11 pages, 4 figures
References in corpus (21)
- Many-Body Physics with Ultracold Gases
- Strong atom-field coupling for Bose-Einstein condensates in an optical cavity on a chip
- Cavity Opto-Mechanics with a Bose-Einstein Condensate
- Cavity QED with a Bose-Einstein condensate
- Cavity Nonlinear Optics at Low Photon Numbers from Collective Atomic Motion
- Emergent superfluid crystals, frustration, and topologically defected states in multimode cavity QED
- Self-organization of a Bose-Einstein condensate in an optical cavity
- Ultracold atoms in optical lattices generated by quantized light fields
- 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
- Cavity enhanced light scattering in optical lattices to probe atomic quantum statistics
- Dynamical Coupling between a Bose-Einstein Condensate and a Cavity Optical Lattice
- Cavity-enhanced superradiant Rayleigh scattering with ultra-cold and Bose-Einstein condensed atoms
- Microscopic physics of quantum self-organisation of optical lattices in cavities
- Excess noise depletion of a Bose-Einstein condensate in an optical cavity
- Cold Fermi atomic gases in a pumped optical resonator
- Suppression of Bragg scattering by collective interference of spatially ordered atoms with a high-Q cavity mode
- Light scattering by ultracold atoms in an optical lattice
- Non-linear optics with two trapped atoms
- Optical bistability at low light level due to collective atomic recoil
Cited by in corpus (68)
- Cold atoms in cavity-generated dynamical optical potentials
- Cavity QED with Quantum Gases: New Paradigms in Many-Body Physics
- Long-range interacting quantum systems
- Dynamics of Nonequilibrium Dicke Models
- On the critical exponent of a quantum noise driven phase transition: the open system Dicke-model
- Umklapp Superradiance from a Collisionless Quantum Degenerate Fermi Gas
- Bose-glass phases of ultracold atoms due to cavity backaction
- Atom-light crystallization of BECs in multimode cavities: Nonequilibrium classical and quantum phase transitions, emergent lattices, supersolidity, and frustration
- Phase Transitions in a Bose-Hubbard Model with Cavity-Mediated Global-Range Interactions
- Nonequilibrium Phase Transition of Interacting Bosons in an Intra-Cavity Optical Lattice
- REVIEW. Quantum optics with ultracold quantum gases: towards the full quantum regime of the light-matter interaction
- Bose-Einstein Condensation versus Dicke-Hepp-Lieb Transition in an Optical Cavity
- Lattice supersolid phase of strongly correlated bosons in an optical cavity
- Excitations of optically driven atomic condensate in a cavity: theory of photodetection measurements
- Out-of-equilibrium dynamics of quantum many-body systems with long-range interactions
- An adjustable-length cavity and Bose-Einstein condensate apparatus for multimode cavity QED
- Prethermalization of atoms due to photon-mediated long-range interactions
- Quantum optical lattices for emergent many-body phases of ultracold atoms
- Feedback-Induced Quantum Phase Transitions Using Weak Measurements
- Ultracold Bosons with cavity-mediated long-range interactions: A local mean field analysis of the phase diagram
- Quantum kinetics of ultracold fermions coupled to an optical resonator
- Numerically exact treatment of many body self-organization in a cavity
- Many-body localization in presence of cavity mediated long-range interactions
- Cavity-induced chiral states of fermionic quantum gases
- Quantum relaxation and metastability of lattice bosons with cavity-induced long-range interactions
- Quantum XX-model with competing short- and long-range interactions: Phases and phase transitions in and out of equilibrium
- Self-organized topological insulator due to cavity-mediated correlated tunneling
- Quantum simulators based on the global collective light-matter interaction
- Thermodynamics and dynamics of atomic self-organization in an optical cavity
- Quantum phases of incommensurate optical lattices due to cavity backaction
- A cavity-induced artificial gauge field in a Bose-Hubbard ladder
- Nano-friction in cavity quantum electrodynamics
- Band structure loops and multistability in cavity-QED
- Multimode mean-field model for the quantum phase transition of a Bose-Einstein condensate in an optical resonator
- Mean-field phase diagram of ultracold atomic gases in cavity quantum electrodynamics
- Quantum properties of light scattered from structured many-body phases of ultracold atoms in quantum optical lattices
- Damping of quasiparticles in a Bose-Einstein condensate coupled to an optical cavity
- Engineering Many-Body Dynamics with Quantum Light Potentials and Measurements
- Bond Order via Light-Induced Synthetic Many-body Interactions of Ultracold Atoms in Optical Lattices
- Finite-size scaling in the quantum phase transition of the open-system Dicke-model
- Theoretical methods to treat a single dissipative bosonic mode coupled globally to an interacting many body system
- Cavity-induced superconducting and charge-density-wave states
- Ultracold atoms in a cavity mediated double-well system
- Recent progress on quantum simulations of non-standard Bose-Hubbard models
- Self-Ordered stationary states of driven quantum degenerate gases in optical resonators
- Mean-field theory of atomic self-organization in optical cavities
- Single-particle localization in dynamical potentials
- Quantum light by atomic arrays in optical resonators
- Dissipative time evolution of a chiral state after a quantum quench
- Probing and Manipulating Fermionic and Bosonic Quantum Gases with Quantum Light
- Self-Pinning Transition of a Tonks-Girardeau Gas in a Bose-Einstein Condensate
- Tunneling dynamics of bosonic Josephson junctions assisted by a cavity field
- Exploring unresolved sideband, optomechanical strong coupling using a single atom coupled to a cavity
- Finite temperature Dicke phase transition of a Bose-Einstein condensate in an optical cavity
- Phases of cold atoms interacting via photon-mediated long-range forces
- Cavity assisted measurements of heat and work in optical lattices
- Bond order via cavity-mediated interactions
- Tuning the universality class of phase transitions by feedback: Open quantum systems beyond dissipation
- Controlling the dynamics of atomic correlations via the coupling to a dissipative cavity
- Cavityless self-organization of ultracold atoms due to the feedback-induced phase transition
- Quantum noise in a transversely pumped cavity Bose--Hubbard model
- Nonequilibrium polariton dynamics in a Bose-Einstein condensate coupled to an optical cavity
- Many-body localization regime for cavity induced long-range interacting models
- Fock space exploration by angle resolved transmission through quantum diffraction grating of cold atoms in an optical lattice
- Dimensional crossover in self-organised super-radiant phases of ultra cold atoms inside a cavity
- From Light-Cone to Supersonic Propagation of Correlations by Competing Short- and Long-Range Couplings
- Master Equation for a Quantum Gas of Polarizable Particles in Cavities
- Identifying insulating states of ultra cold atoms with cavity transmission spectrum