Unified theory of attractive and repulsive polarons in one-dimensional Bose gas

POSTER

Abstract

We present a unified description of attractive and repulsive polarons, formed in a one-dimensional Bose gas hosting an impurity particle, by obtaining all ground and excited state solutions to the Gross-Pitaevskii equation. Modeling the impurity with an attractive square-well potential, we characterize the excited-state energy branches as a function of interaction strength. As the impurity-bath coupling increases, the excited states change from distinct soliton configurations to hybridized soliton-polaron states, eventually crossing over from repulsive to attractive polarons at unitarity. We identify a universal regime near this crossover where the polaron properties are accurately characterized by the zero-energy scattering length.

*This work was supported by the Simons Collaboration on UltraQuantum Matter, which is a grant from the Simons Foundation (651440, VG). NY acknowledges support by AFOSR Grant No. FA9550-23-1–0598.

Publication: Nikolay Yegovtsev and T. Alper Yoğurt and Matthew T. Eiles and Victor Gurarie, "Unified theory of attractive and repulsive polarons in one-dimensional Bose gas". https://doi.org/10.48550/arXiv.2510.01046

Presenters

  • Nikolay Yegovtsev

    • University of Pittsburgh

Authors

  • Nikolay Yegovtsev

    • University of Pittsburgh
  • Taha Alper Yogurt

    • Max Planck Institute for the Physics of Complex Systems
  • Matthew T Eiles

    • Department of Physics and Astronomy, Purdue University
    • Purdue University
  • Victor Gurarie

    • University of Colorado, Boulder