English

Three-dimensional stability of leapfrogging quantum vortex rings

Other Condensed Matter 2018-08-27 v3 Pattern Formation and Solitons

Abstract

It is shown by numerical simulations within a regularized Biot-Savart law that dynamical systems of two or three leapfrogging coaxial quantum vortex rings having a core width ξ\xi and initially placed near a torus of radii R0R_0 and r0r_0, can be three-dimensionally (quasi-)stable in some regions of parameters Λ=ln(R0/ξ)\Lambda=\ln(R_0/\xi) and W=r0/R0W=r_0/R_0. At fixed Λ\Lambda, stable bands on WW are intervals between non-overlapping main parametric resonances for different (integer) azimuthal wave numbers mm. The stable intervals are most wide (ΔW\Delta W\sim 0.01--0.05) between mm-pairs (1,2)(1,2) and (2,3)(2,3) at Λ\Lambda\approx 4--12 thus corresponding to micro/mesoscopic sizes of vortex rings in the case of superfluid 4^4He. With four and more rings, at least for W>0.1W>0.1, resonances overlap for all Λ\Lambda and no stable domains exist.

Keywords

Cite

@article{arxiv.1806.08173,
  title  = {Three-dimensional stability of leapfrogging quantum vortex rings},
  author = {Victor P. Ruban},
  journal= {arXiv preprint arXiv:1806.08173},
  year   = {2018}
}

Comments

7 pages, 9 figures, the published version plus an additional remark

R2 v1 2026-06-23T02:37:09.948Z