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- W4386097580 abstract "We study the ground state and low-lying polaritonic excitation states in the Ising-Rabi lattice model (IRLM), where the transverse field in the quantum transverse field Ising model is replaced by a quantized local photon field. The competition among the photon-hopping coupling, the intrasite Rabi interaction, and the Ising interaction drives the system across a quantum phase transition from the insulating phase to the delocalized superradiant phase. Mean-field theory confirms the existence of the quantum phase transition and the analytical expressions for the phase boundary are derived. The spectra of low-lying polaritonic excitations and Bose-Einstein condensation are further explored by a unitary transformation method. The deep strong-coupling analysis reveals a quantum criticality, where the IRLM belongs to the universality class of the $XYZ$ model. When the hopping strength $t=0$, the properties of the ground state in the IRLM are investigated by the symmetry analysis and the density-matrix renormalization-group method. It turns out that the photon field cannot alone serve as a global transverse field in the quantum transverse field Ising model without the presence of hopping coupling since a crossover behavior instead of a quantum phase transition is confirmed." @default.
- W4386097580 created "2023-08-24" @default.
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- W4386097580 date "2023-08-23" @default.
- W4386097580 modified "2023-10-17" @default.
- W4386097580 title "Hopping-induced quantum phase transition in the Ising-Rabi lattice model" @default.
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- W4386097580 doi "https://doi.org/10.1103/physreva.108.023723" @default.
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