Eltsov V B, Golov A I, de Graaf R, Hänninen R, Krusius M, L'vov V S, Solntsev R E
Low Temperature Laboratory, Helsinki University of Technology, P.O. Box 5100, 02015 HUT, Finland.
Phys Rev Lett. 2007 Dec 31;99(26):265301. doi: 10.1103/PhysRevLett.99.265301. Epub 2007 Dec 26.
We present experimental, numerical, and theoretical studies of a vortex front propagating into a region of vortex-free flow of rotating superfluid 3He-B. We show that the nature of the front changes from laminar through quasiclassical turbulent to quantum turbulent with decreasing temperature. Our experiment provides the first direct measurement of the dissipation rate in turbulent vortex dynamics of 3He-B and demonstrates that the dissipation becomes mutual-friction independent with decreasing temperature, and it is strongly suppressed when the Kelvin-wave cascade on vortex lines is predicted to be involved in the turbulent energy transfer to smaller length scales.
我们展示了对涡旋前沿传播到旋转超流3He-B的无涡旋流区域的实验、数值和理论研究。我们表明,随着温度降低,前沿的性质从层流转变为准经典湍流,再到量子湍流。我们的实验首次直接测量了3He-B湍流涡旋动力学中的耗散率,并表明随着温度降低,耗散变得与相互摩擦无关,并且当预计涡旋线上的开尔文波级联参与将湍流能量转移到更小长度尺度时,耗散会受到强烈抑制。