English

Breather induced quantized superfluid vortex filaments and their characterization

Pattern Formation and Solitons 2019-05-21 v1 Quantum Gases Exactly Solvable and Integrable Systems Fluid Dynamics

Abstract

We study and characterize the breather-induced quantized superfluid vortex filaments which correspond to the Kuznetsov-Ma breather and super-regular breather excitations developing from localised perturbations. Such vortex filaments, emerging from an otherwise perturbed helical vortex, exhibit intriguing loop structures corresponding to the large amplitude of breathers due to the dual action of bending and twisting of the vortex. The loop induced by Kuznetsov-Ma breather emerges periodically as time increases, while the loop structure triggered by super-regular breather---the loop pair---exhibits striking symmetry breaking due to the broken reflection symmetry of the group velocities of super-regular breather. In particular, we identify explicitly the generation conditions of these loop excitations by introducing a physical quantity---the integral of the relative quadratic curvature---which corresponds to the effective energy of breathers. Although the nature of nonlinearity, it is demonstrated that this physical quantity shows a linear correlation with the loop size. These results will deepen our understanding of breather-induced vortex filaments and be helpful for controllable ring-like excitations on the vortices.

Keywords

Cite

@article{arxiv.1905.07878,
  title  = {Breather induced quantized superfluid vortex filaments and their characterization},
  author = {Hao Li and Chong Liu and Wei Zhao and Zhan-Ying Yang and Wen-Li Yang},
  journal= {arXiv preprint arXiv:1905.07878},
  year   = {2019}
}

Comments

9 pages, 9 figures

R2 v1 2026-06-23T09:12:32.185Z