English

Hopfions in the Lee-Huang-Yang superfluids

Quantum Gases 2025-11-17 v1

Abstract

It is known that, under appropriate conditions, mean-field interactions can be canceled in binary BEC, leading to the formation of the Lee-Huang-Yang (LHY) superfluid, in which the nonlinearity is solely represented by the quartic LHY term. In this work we systematically investigate the existence, stability and evolution of hopfion states in this species of quantum matter. They are characterized by two independent topological winding numbers: inner twist ss of the vortex-ring core and overall vorticity mm. The interplay between the LHY self-repulsion and a trapping harmonic-oscillator potential results in stability of the hopfions with s=1s = 1 and mm ranging from 00 to 44. The hopfions exhibit distinct topological phase distributions along the vertical axis and the radial direction in the horizontal plane. Their effective radius and peak density increase with the chemical potential, along with expansion of the vortex-ring core. Although the instability domain of the hopfion modes broadens with the increase of mm, stable hopfions persist in a wide range of the chemical potential, up to m=4m=4, at least, provided that the norm exceeds a certain threshold value. The predictions are experimentally accessible in currently used BEC setups.

Keywords

Cite

@article{arxiv.2511.10977,
  title  = {Hopfions in the Lee-Huang-Yang superfluids},
  author = {Liangwei Dong and Mingjing Fan and Boris A. Malomed and Yaroslav V. Kartashov},
  journal= {arXiv preprint arXiv:2511.10977},
  year   = {2025}
}

Comments

8 pages, 5 figures, to be published in Chaos, Solitons & Fractals