Dissipation of Quantum Turbulence in the Zero Temperature Limit
Other Condensed Matter
2011-11-10 v2
Abstract
Turbulence, produced by an impulsive spin-down from angular velocity Omega to rest of a cube-shaped container, is investigated in superfluid 4He at temperatures 0.08 K - 1.6 K. The density of quantized vortex lines L is measured by scattering negative ions. Homogeneous turbulence develops after time t of approximately 20 \Omega and decays as L proportional to t^(-3/2). The corresponding energy flux epsilon = nu' (kappa L)^2, which is proportional to t^(-3), is characteristic of quasi-classical turbulence at high Re with a saturated energy-containing length. The effective kinematic viscosity in the T=0 limit is nu' = 0.003 kappa, where kappa=10^(-3) cm^2 / s is the circulation quantum.
Keywords
Cite
@article{arxiv.0710.1033,
title = {Dissipation of Quantum Turbulence in the Zero Temperature Limit},
author = {P. M. Walmsley and A. I. Golov and H. E. Hall and A. A. Levchenko and W. F. Vinen},
journal= {arXiv preprint arXiv:0710.1033},
year = {2011}
}
Comments
4 pages, 5 figures. Updated following referees comments