Photon condensation in circuit QED by engineered dissipation
arXiv:1201.3388 · doi:10.1088/1367-2630/14/5/055005
Abstract
We study photon condensation phenomena in a driven and dissipative array of superconducting microwave resonators. Specifically, we show that by using an appropriately designed coupling of microwave photons to superconducting qubits, an effective dissipative mechanism can be engineered, which scatters photons towards low-momentum states while conserving their number. This mimics a tunable coupling of bosons to a low temperature bath, and leads to the formation of a stationary photon condensate in the presence of losses and under continuous-driving conditions. Here we propose a realistic experimental setup to observe this effect in two or multiple coupled cavities, and study the characteristics of such an out-of-equilibrium condensate, which arise from the competition between pumping and dissipation processes.
References in corpus (39)
- Many-Body Physics with Ultracold Gases
- Charge insensitive qubit design derived from the Cooper pair box
- Quantum nature of a strongly-coupled single quantum dot-cavity system
- Robust optical delay lines via topological protection
- Quantum States and Phases in Driven Open Quantum Systems with Cold Atoms
- An Open-System Quantum Simulator with Trapped Ions
- Observation of high coherence in Josephson junction qubits measured in a three-dimensional circuit QED architecture
- Strongly Interacting Polaritons in Coupled Arrays of Cavities
- Quantum phase transitions of light
- Bose-Einstein condensation of photons in an optical microcavity
- Entanglement generated by dissipation and steady state entanglement of two macroscopic objects
- Photon blockade induced Mott transitions and XY spin models in coupled cavity arrays
- Quantum Many-Body Phenomena in Coupled Cavity Arrays
- Time-reversal symmetry breaking in circuit-QED based photon lattices
- Dissipative preparation of entanglement in optical cavities
- Dynamical Phase Transitions and Instabilities in Open Atomic Many-Body Systems
- Single artificial-atom lasing
- Fractional quantum Hall states of photons in an array of dissipative coupled cavities
- Crystallization of strongly interacting photons in a nonlinear optical fiber
- Mott-insulating and glassy phases of polaritons in 1D arrays of coupled cavities
- Thermalisation of a two-dimensional photonic gas in a 'white-wall' photon box
- Fractional Quantum Hall State in Coupled Cavities
- Superfluid-Mott Insulator Transition of Light in the Jaynes-Cummings Lattice
- Dissipatively driven entanglement of two macroscopic atomic ensembles
- Photon shell game in three-resonator circuit quantum electrodynamics
- Many-body phenomena in QED-cavity arrays
- Single-qubit lasing and cooling at the Rabi frequency
- Strong coupling theory for the Jaynes-Cummings-Hubbard model
- Nonequilibrium Phase Diagram of a Driven-Dissipative Many-Body System
- Synthetic gauge fields and homodyne transmission in Jaynes-Cummings lattices
- Giant Kerr nonlinearities in Circuit-QED
- Statistical physics of Bose-Einstein condensed light in a dye microcavity
- Non-equilibrium delocalization-localization transition of photons in circuit QED
- Bose-Hubbard dynamics of polaritons in a chain of circuit QED cavities
- Excitation spectra of strongly correlated lattice bosons and polaritons
- Bose-Einstein condensation of stationary-light polaritons
- Emission characteristics of laser-driven dissipative coupled-cavity systems
- Arrays of waveguide-coupled optical cavities that interact strongly with atoms
- Dissipation-induced squeezing
Cited by in corpus (51)
- Quantum trajectories and open many-body quantum systems
- Keldysh Field Theory for Driven Open Quantum Systems
- Circuit QED lattices: towards quantum simulation with superconducting circuits
- Cavity-assisted quantum bath engineering
- Quantum Simulation with Interacting Photons
- Driven Markovian Quantum Criticality
- Reservoir engineering and dynamical phase transitions in optomechanical arrays
- Characterization of dynamical phase transitions in quantum jump trajectories beyond the properties of the stationary state
- Networks of nonlinear superconducting transmission line resonators
- Cooling and Autonomous Feedback in a Bose-Hubbard chain with Attractive Interactions
- Entanglement entropy scaling transition under competing monitoring protocols
- Steady-state entanglement of spatially separated qubits via quantum bath engineering
- Quantum phases in circuit QED with a superconducting qubit array
- Quantum correlations in the 1-D driven dissipative transverse field XY model
- Universality in driven open quantum matter
- Correlation engineering via non-local dissipation
- Quantum dynamical field theory for non-equilibrium phase transitions in driven open systems
- Collectively-enhanced optomechanical coupling in periodic arrays of scatterers
- Localization in open quantum systems
- Space-time vortex driven crossover and vortex turbulence phase transition in one-dimensional driven open condensates
- Circuit QED bright source for chiral entangled light based on dissipation
- Dissipative preparation of phase- and number-squeezed states with ultracold atoms
- Engineering dissipation with resistive elements in circuit quantum electrodynamics
- Signatures of many-body localization in steady states of open quantum systems
- Criticality and Phase Classification for Quadratic Open Quantum Many-Body Systems
- Dissipation induced extended-localized transition
- Spontaneous, collective coherence in driven, dissipative cavity arrays
- Universality class of Ising critical states with long-range losses
- The bosonic skin effect: boundary condensation in asymmetric transport
- Engineered Open Systems and Quantum Simulations with Atoms and Ions
- Quantum jumps on Anderson attractors
- Many body localization proximity effects in platforms of coupled spins and bosons
- Super-operator structures and no-go theorems for dissipative quantum phase transitions
- Phase Transitions in Nonreciprocal Driven-Dissipative Condensates
- Simulating systems of itinerant spin-carrying particles using arrays of superconducting qubits and resonators
- Crossover from the discontinuous to continuous phase transitions in dissipative spin system with collective decay
- Manipulating the Relaxation Time of Boundary-Dissipative Systems through Bond Dissipation
- Dissipation induced transition between delocalization and localization in the three-dimensional Anderson model
- Bose-Hubbard models with photon pairing in circuit-QED
- Controlling Nonequilibrium Bose-Einstein Condensation with Engineered Environments
- Localization to delocalization transition in a driven nonlinear cavity array
- How to exploit driving and dissipation to stabilize and manipulate quantum many-body states
- Inducing a transition between thermal and many-body localized states and detecting many-body mobility edges through dissipation
- A General Strategy for Realizing Mpemba Effects in Open Quantum Systems
- Aperiodic Dissipation as a Mechanism for Steady-State Localization
- Singularities in nearly-uniform 1D condensates due to quantum diffusion
- Quantum friction: environment engineering perspectives
- Dissipation-Driven Transition of Particles from Dispersive to Flat Bands
- Condensation in hybrid superconducting cavity-microscopic spins systems with finite-bandwidth drive
- Dissipation induced ergodic-nonergodic transitions in finite-height mosaic Wannier-Stark lattices
- Refrigeration of a 1D gas of microwave photons