Supersolid phases of light in extended Jaynes-Cummings-Hubbard systems
arXiv:1310.4548 · doi:10.1103/PhysRevA.90.043801
Abstract
Jaynes-Cummings-Hubbard lattices provide unique properties for the study of correlated phases as they exhibit convenient state preparation and measurement, as well as "in situ" tuning of parameters. We show how to realize charge density and supersolid phases in Jaynes-Cummings-Hubbard lattices in the presence of long-range interactions. The long-range interactions are realized by the consideration of Rydberg states in coupled atom-cavity systems and the introduction of additional capacitive couplings in quantum-electrodynamics circuits. We demonstrate the emergence of supersolid and checkerboard solid phases, for calculations which take into account nearest neighbour couplings, through a mean-field decoupling.
9 pages with 6 figures, accepted for publication in Physical Review A
References in corpus (28)
- Bose-Einstein condensation of chromium
- Strongly Interacting Polaritons in Coupled Arrays of Cavities
- Resolving photon number states in a superconducting circuit
- Bose-Einstein Condensation of Erbium
- Quantum phase transitions of light
- Photon blockade induced Mott transitions and XY spin models in coupled cavity arrays
- Hidden order in 1D Bose insulators
- Supersolids versus phase separation in two-dimensional lattice bosons
- All-Optical Production of Chromium Bose-Einstein Condensates
- Mott-insulating and glassy phases of polaritons in 1D arrays of coupled cavities
- Microwave-induced coupling of superconducting qubits
- Superfluid-Mott Insulator Transition of Light in the Jaynes-Cummings Lattice
- Effective spin systems in coupled micro-cavities
- Strong coupling theory for the Jaynes-Cummings-Hubbard model
- Density wave and supersolid phases of correlated bosons in an optical lattice
- Searching for a Supersolid in Cold Atom Optical Lattices
- Entanglement of superconducting qubits via microwave fields: classical and quantum regimes
- Interqubit coupling mediated by a high-excitation-energy quantum object
- Experimental realization of a quantum phase transition of polaritonic excitations
- Superradiant Solid in Cavity QED Coupled to a Lattice of Rydberg Gas
- Steady-state phase diagram of a driven QED-cavity array with cross-Kerr nonlinearities
- Simulation of high-spin Heisenberg models in coupled cavities
- Emission characteristics of laser-driven dissipative coupled-cavity systems
- Reproducing spin lattice models in strongly coupled atom-cavity systems
- Reconfigurable quantum metamaterials
- Long-range coupling and scalable architecture for superconducting flux qubits
- Spontaneous, collective coherence in driven, dissipative cavity arrays
- Polaritonic properties of the Jaynes-Cummings lattice model in two dimensions
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- Effective Three-Body Interactions in Jaynes-Cummings-Hubbard Systems
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- Worm quantum Monte-Carlo study of phase diagram of extended Jaynes-Cummings-Hubbard model
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