Exceptional solutions in two-mode quantum Rabi models
S. A. Chilingaryan, B. M. Rodr\'iguez-Lara

TL;DR
This paper analyzes two two-mode quantum Rabi models, revealing their symmetries, exact solutions in resonant cases, ground state configurations, and potential for quantum information applications like beam splitting.
Contribution
It introduces and solves two novel two-mode quantum Rabi models, highlighting their symmetries, ground states, and potential for integrability and quantum technological applications.
Findings
Both models exhibit partial two-mode SU(2) symmetry.
The first model is isomorphic to the quantum Rabi model with two ground states.
The second model has four ground state configurations and suggests integrability.
Abstract
We study two models describing the interaction of a two-level system with two quantum field modes. The first one is equivalent to a dissipative two-state system with just two boson fields in the absence of tunneling. The second describes two orthogonal fields interacting with the corresponding orthogonal dipoles of a two-level system. We show that both models present a partial two-mode symmetry and that they can be solved in the exceptional case of resonant fields. We study their ground state configurations, that is, we find the quantum precursors of the corresponding semi-classical phase transitions, as well as their whole spectra to infer their integrability. We show that the first model in the exceptional case is isomorphic with the quantum Rabi model and allows just two ground state configurations, vacuum and non-vacuum. The second model allows four ground state…
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