English

Visualization study of counterflow in superfluid helium-4 using metastable helium molecules

Fluid Dynamics 2010-07-22 v1 Other Condensed Matter Atomic and Molecular Clusters Quantum Physics

Abstract

Heat is carried in superfluid He-4 by the motion of the normal fluid1^{1}, a counterflowing superfluid component serving to eliminate any net mass flow. It has been known for many years that above a critical heat current the superfluid component in this counterflow becomes turbulent. This turbulence takes the form of a disorganized tangle of quantized vortex lines and is maintained by the relative motion of the two fluids23^{2-3}. It has been suspected that the normal fluid may also become turbulent4^{4}, but experimental verification is difficult without a technique for visualizing the flow. Here we report a series of visualization studies on the normal-fluid component in a thermal counterflow performed by imaging the motion of seeded metastable helium molecules using a laser-induced-fluorescence technique58^{5-8}. We present evidence that the flow of the normal fluid is indeed turbulent, at least at relatively large velocities. Thermal counterflow in which both components are turbulent presents us with a new and theoretically challenging type of turbulent behaviour.

Keywords

Cite

@article{arxiv.1004.2545,
  title  = {Visualization study of counterflow in superfluid helium-4 using metastable helium molecules},
  author = {Wei Guo and Sidney B. Cahn and James A. Nikkel and William F. Vinen and Daniel N. McKinsey},
  journal= {arXiv preprint arXiv:1004.2545},
  year   = {2010}
}

Comments

6 pages, 4 figures. Supplementary information is included.

R2 v1 2026-06-21T15:10:36.179Z