English

Crossover from weak to strong quench in a spinor Bose-Einstein condensate

Quantum Gases 2020-02-26 v2

Abstract

We investigate the early-time dynamics of a quasi-two-dimensional spin-1 antiferromagnetic Bose-Einstein condensate after a sudden quench from the easy-plane to the easy-axis polar phase. The post-quench dynamics shows a crossover behavior as the quench strength q~\tilde{q} is increased, where q~\tilde{q} is defined as the ratio of the initial excitation energy per particle to the characteristic spin interaction energy. For a weak quench of q~<1\tilde{q}<1, long-wavelength spin excitations are dominantly generated, leading to the formation of irregular spin domains. With increasing q~\tilde{q}, the length scale of the initial spin excitations decreases, and we demonstrate that the long-wavelength instability is strongly suppressed for high q~>2\tilde{q}>2. The observed crossover behavior is found to be consistent with the Bogoliubov description of the dynamic instability of the initial spinor condensate.

Keywords

Cite

@article{arxiv.1909.00681,
  title  = {Crossover from weak to strong quench in a spinor Bose-Einstein condensate},
  author = {Seji Kang and Deokhwa Hong and Joon Hyun Kim and Yong-il Shin},
  journal= {arXiv preprint arXiv:1909.00681},
  year   = {2020}
}

Comments

7 pages, 6 figures

R2 v1 2026-06-23T11:03:06.489Z