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    Asymmetric polaron picture for the quantum Rabi model

    Feng Qiao, Qiu-Yi Chen, and Zu-Jian Ying*

    • School of Physical Science and Technology, Lanzhou University, Lanzhou 730000, China and Key Laboratory for Quantum Theory and Applications of MoE, Lanzhou Center for Theoretical Physics, Lanzhou University, Lanzhou 730000, China

    • *Contact author: yingzj@lzu.edu.cn

    Phys. Rev. A 114, 022457 – Published 25 August, 2026

    DOI: https://doi.org/10.1103/nc6b-691t

    Abstract

    The experimental access to ultrastrong couplings in light-matter interactions has made the quantum phase transition (QPT) in the quantum Rabi model practically relevant, while the physics of the QPT has not yet been fully explored. The polaron picture is a method capable of analyzing in the entire coupling regime and extracting the essential physics behind the QPT. However, the asymmetric deformation of polarons is missing in the current polaron picture. In this work we propose an improved variational method in asymmetric polaron picture (APP). Our APP not only increases the method accuracy but also reveals more underlying physics concerning the QPT. We find that in the ground state both the polarons and antipolarons are asymmetrically deformed to a large extent, which leads to a richer variation diagram. We also analyze the first excited state in which we unveil an asymmetry direction reversal for the polarons and an effective attraction or repulsion changeover differently from the ground state. Finally, we apply the APP in quantum Fisher information analysis and critical coupling extraction; the improvements indicate that the polaron asymmetry makes a considerable contribution to the quantum resource in quantum metrology and plays an unnegligible role in the QPT. Our results and mechanism clarifications expose more subtle energy competitions and abundant physics, and the method potentially might have broader applications in light-matter interactions.

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