Finne A P, Eltsov V B, Eska G, Hänninen R, Kopu J, Krusius M, Thuneberg E V, Tsubota M
Low Temperature Laboratory, Helsinki University of Technology, P.O. Box 2200, FIN-02015 HUT, Finland.
Phys Rev Lett. 2006 Mar 3;96(8):085301. doi: 10.1103/PhysRevLett.96.085301. Epub 2006 Feb 27.
A surface-mediated process is identified in 3He-B which generates vortices at a roughly constant rate. It precedes a faster form of turbulence where intervortex interactions dominate. This precursor becomes observable when vortex loops are introduced in low-velocity rotating flow at sufficiently low mutual friction dissipation at temperatures below 0.5Tc. Our measurements indicate that the formation of new loops is associated with a single vortex interacting in the applied flow with the sample boundary. Numerical calculations show that the single-vortex instability arises when a helical Kelvin wave expands from a reconnection kink at the wall and then intersects again with the wall.
在3He-B中识别出一种表面介导过程,该过程以大致恒定的速率产生涡旋。它先于一种更快的湍流形式,在这种湍流中涡旋间相互作用占主导。当在低于0.5Tc的温度下,在足够低的相互摩擦耗散的低速旋转流中引入涡旋环时,这种先兆现象变得可观测。我们的测量表明,新环的形成与单个涡旋在外部流中与样品边界相互作用有关。数值计算表明,当螺旋开尔文波从壁处的重新连接扭结处扩展,然后再次与壁相交时,会出现单涡旋不稳定性。