Phase Diagram of Solitons in the Polar Phase of a Spin-1 Bose-Einstein Condensate

POSTER

Abstract

We theoretically study the structure of a stationary soliton in the polar phase of spin-1 Bose--Einstein condensate in the presence of quadratic Zeeman effect at zero temperature. The phase diagram of such solitons is mapped out by finding the states of minimal soliton energy in the defining range of polar phase. The states are assorted into normal, anti-ferromagnetic, broken-axisymmetry, and ferromagnetic phases according to the number and spin densities in the core. The order of phase transitions between different solitons and the critical behaviour of relevant continuous transitions are proved within the mean-field theory.

*I.-K.L. and S.-C.G. were financially supported by MOST 106-2112-M-018-005-MY3 (Taiwan). H.T. has been sup- ported by JSPS KAKENHI Grants No. JP17K05549, No. JP18KK0391, No. JP20H01842, and in part by the OCU "Think globally, act locally" Research Grant for Young Sci- entists 2019 and 2020 through the hometown donation fund of Osaka City. We

Publication: Phys. Rev. Research 2, 033506 (2020)

Presenters

  • I-Kang Liu

    • Newcastle University

Authors

  • I-Kang Liu

    • Newcastle University
  • Shih-Chuan Gou

    • Natl Chang Hua Univ of Ed
  • Hiromitsu Takeuchi

    • Osaka City Univ