Quantum phase transition in the one-dimensional Dicke-Hubbard model with coupled qubits
arXiv:2111.03487 · doi:10.1103/PhysRevA.106.033712
Abstract
We study the ground state phase diagram of a one-dimensional two qubits Dicke-Hubbard model with XY qubit-qubit interaction. We use a numerical method combing the cluster mean-field theory and the matrix product state(MPS) to obtain the exact wave function of the ground state. When counter-rotating wave terms(CRTs) in the qubit-cavity coupling are neglected, we observe a rich phase diagram including a quantum phase transition between the Mott-insulating phase and the superfluid phase. This phase transition can be either the first-order or the second-order type depending on whether the total angular momentum changes across the phase diagram. Moreover, we observe two quantum triple points, at which three different phases coexist, with both positive and negative XY interactions. By further considering the effect of CRTs, we find that the main feature in the previous phase diagram, including the existence of quantum triple points, is retained. We also show that CRTs extremely demolish the non-local correlations in the coherent phase.
References in corpus (20)
- The density-matrix renormalization group in the age of matrix product states
- Quantum nature of a strongly-coupled single quantum dot-cavity system
- Beyond the Jaynes-Cummings model: circuit QED in the ultrastrong coupling regime
- Strongly Interacting Polaritons in Coupled Arrays of Cavities
- Quantum phase transitions of light
- Photon blockade induced Mott transitions and XY spin models in coupled cavity arrays
- Deep Strong Coupling Regime of the Jaynes-Cummings model
- Quantum Many-Body Phenomena in Coupled Cavity Arrays
- Is there a no-go theorem for superradiant quantum phase transitions in cavity and circuit QED ?
- Ultrastrong coupling regime of cavity QED with phase-biased flux qubits
- Digital quantum simulation of spin models with circuit quantum electrodynamics
- Variational Matrix Product Operators for the Steady State of Dissipative Quantum Systems
- Superfluid-Mott Insulator Transition of Light in the Jaynes-Cummings Lattice
- Accurate numerical solution to the finite-size Dicke model
- On the phase transition of light in cavity QED lattices
- Many-body phenomena in QED-cavity arrays
- Strong coupling theory for the Jaynes-Cummings-Hubbard model
- Fractional-filling loophole insulator domains for ultracold bosons in optical superlattices
- Quantum Phase Transitions of Light in the Dicke-Bose-Hubbard model
- Nonlinear two-photon Rabi-Hubbard model: superradiance and photon/photon-pair Bose-Einstein condensate