Bose-Hubbard models with photon pairing in circuit-QED
arXiv:1304.7196 · doi:10.1088/0953-4075/46/22/224024
Abstract
In this work we study a family of bosonic lattice models that combine an on-site repulsion term with a nearest-neighbor pairing term, Like the original Bose-Hubbard model, the nearest-neighbor term is responsible for the mobility of bosons and it competes with the local interaction, inducing two-mode squeezing. However, unlike a trivial hopping, the counter-rotating terms form pairing cannot be studied with a simple mean-field theory and does not present a quantum phase transition in phase space. Instead, we show that there is a cross-over from a pure insulator to long-range correlations that start up as soon as the two-mode squeezing is switched on. We also show how this model can be naturally implemented using coupled microwave resonators and superconducting qubits.
Final version, 19 pages, 9 figures
References in corpus (12)
- Quantum phase transition from a superfluid to a Mott insulator in a gas of ultracold atoms
- Beyond the Jaynes-Cummings model: circuit QED in the ultrastrong coupling regime
- Strongly Interacting Polaritons in Coupled Arrays of Cavities
- Classical simulation of infinite-size quantum lattice systems in one spatial dimension
- Quantum phase transitions of light
- Observation of the Bloch-Siegert Shift in a Qubit-Oscillator System in the Ultrastrong Coupling Regime
- Photon blockade induced Mott transitions and XY spin models in coupled cavity arrays
- The iTEBD algorithm beyond unitary evolution
- Low-Disorder Microwave Cavity Lattices for Quantum Simulation with Photons
- Photon solid phases in driven arrays of nonlinearly coupled cavities
- Tunable coupling engineering between superconducting resonators: from sidebands to effective gauge fields
- Circuit QED bright source for chiral entangled light based on dissipation
Cited by in corpus (4)
- Transmon-based simulator of nonlocal electron-phonon coupling: A platform for observing sharp small-polaron transitions
- Coupling spin ensembles via superconducting flux qubits
- Quantum criticality in interacting bosonic Kitaev-Hubbard models
- Staggered quantum walks with superconducting microwave resonators