Frequency-renormalized Multipolaron Expansion for the Quantum Rabi Model

ORAL

Abstract

We present a frequency-renormalized multipolaron expansion method to explore the ground state of the quantum Rabi model (QRM). The main idea is to take polaron as starting point to expand the ground state of QRM. The polarons are deformed and displaced oscillator states with variationally determined frequency renormalization and displacement parameters. This method is an extension of the previously proposed polaron concept and the coherent state expansion used in the literature, which shows high efficiency in describing the physics of the QRM. The proposed method is expected to be useful for solving other more complicated light-matter interaction models.

*This work was supported by NSFC (Grants No. 11325417 and No. 11674139), PCSIRT (Grant No. IRT-16R35) and FET-Open Grant No. 618083 (CNTQC).

Presenters

  • Lei Cong

    • Lanzhou University

Authors

  • Lei Cong

    • Lanzhou University
  • Xi-Mei Sun

    • Lanzhou University
  • Maoxin Liu

    • Beijing Computational Science Research Center
  • Zu-Jian Ying

    • Beijing Computational Science Research Center
    • Bejing Computational Science Research Center
  • Hong-Gang Luo

    • Lanzhou University