O. V. Lounasmaa Laboratory, Aalto University, FI-00076 Aalto, Finland.
Proc Natl Acad Sci U S A. 2014 Mar 25;111 Suppl 1(Suppl 1):4711-8. doi: 10.1073/pnas.1312539111. Epub 2014 Mar 24.
In Fermi superfluids, such as superfluid (3)He, the viscous normal component can be considered to be stationary with respect to the container. The normal component interacts with the superfluid component via mutual friction, which damps the motion of quantized vortex lines and eventually couples the superfluid component to the container. With decreasing temperature and mutual friction, the internal dynamics of the superfluid component becomes more important compared with the damping and coupling effects from the normal component. As a result profound changes in superfluid dynamics are observed: the temperature-dependent transition from laminar to turbulent vortex motion and the decoupling from the reference frame of the container at even lower temperatures.
在费米超流体中,如超流(3)氦,粘性正常组件可以被认为相对于容器是静止的。正常组件通过相互摩擦与超流组件相互作用,这种摩擦会阻尼量子涡旋线的运动,并最终将超流组件与容器耦合。随着温度的降低和相互摩擦的减少,与正常组件的阻尼和耦合效应相比,超流组件的内部动力学变得更加重要。结果,观察到超流动力学的深刻变化:温度相关的从层流向湍流涡旋运动的转变,以及在更低温度下与容器参考系的解耦。