English

Stable hopfions in trapped quantum droplets

Quantum Gases 2025-07-16 v1

Abstract

Hopfions are a class of three-dimensional (3D) solitons which are built as vortex tori carrying intrinsic twist of the toroidal core. They are characterized by two independent topological charges, \textit{viz}., vorticity SS and winding number MM of the intrinsic twist, whose product determines the \textit{Hopf number}, QH=MSQ_{H}=MS, which is the basic characteristic of the hopfions. We construct hopfions as solutions of the 3D Gross-Pitaevskii equations (GPEs) for Bose-Einstein condensates in binary atomic gases. The GPE system includes the cubic mean-field self-attraction, competing with the quartic self-repulsive Lee-Huang-Yang (LHY) term, which represents effects of quantum fluctuations around the mean-field state, and a trapping toroidal potential (TP). A systematic numerical analysis demonstrates that families of the states with S=1,M=0S=1,M=0, i.e., QH=0Q_{H}=0, are stable, provided that the inner TP\ radius R0R_{0} exceeds a critical value. Furthermore, true hopfions with S=1,M=17S=1,M=1\sim 7, which correspond, accordingly, to QH=17Q_{H}=1\sim 7, also form partly stable families, including the case of the LHY\ superfluid, in which the nonlinearity is represented solely by the LHY term. On the other hand, the hopfion family is completely unstable in the absence of the LHY term, when only the mean-field nonlinearity is present. We illustrate the knot-like structure of the hopfions by means of an elementary geometric picture. For QH=0Q_{H}=0, circles which represent the \textit{preimage} of the full state do not intersect. On the contrary, for QH1Q_{H}\geq 1 they intersect at points whose number is identical to QHQ_{H}. The intersecting curves form multi-petal structures with the number of petals also equal to QHQ_{H}.

Keywords

Cite

@article{arxiv.2507.10910,
  title  = {Stable hopfions in trapped quantum droplets},
  author = {Zibin Zhao and Guilong Li and Huanbo Luo and Bin Liu and Guihua Chen and Boris A. Malomed and Yongyao Li},
  journal= {arXiv preprint arXiv:2507.10910},
  year   = {2025}
}

Comments

10 pages, 10 figures, and 90 references

R2 v1 2026-07-01T04:01:30.656Z