English

Spherically symmetric counterflow turbulence in open geometry

Fluid Dynamics 2025-09-18 v1

Abstract

We report preliminary results on spherical thermal counterflow generated by a small central heater in an open geometry, an open bath of superfluid He~II, as closed-cell experiments could have introduced artifacts such as overheating and boundary-induced flows. In order to eliminate them, we measure second sound attenuation in a plane-parallel resonator. Our results are at variance with the previous experiments in closed spherical cavity that showed plateau in the steady-state vortex line density and its inverse time decay, neither of which is observed presently. We find that in open geometry the vortex line density LL increases steadily with counterflow velocity vnsv_\mathrm{ns}, displaying a crossover between Lvns2L \propto v_\mathrm{ns}^2 typical for counterflow and Lvns3/2L \propto v_\mathrm{ns}^{3/2}, characteristic for the quasi-classical scaling.

Keywords

Cite

@article{arxiv.2509.14103,
  title  = {Spherically symmetric counterflow turbulence in open geometry},
  author = {Tomáš Dunca and Filip Novotný and Marek Talíř and Balázs Szalai and Nikita Ustinov and Ladislav Skrbek and Emil Varga},
  journal= {arXiv preprint arXiv:2509.14103},
  year   = {2025}
}

Comments

11 pages, 5 figures

R2 v1 2026-07-01T05:42:10.240Z