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Spin-up of a two-component superfluid: self-consistent container feedback

机译:两组分超流体的旋转:自洽的容器反馈

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摘要

The coupled dynamic response of a rigid container filled with a two-component superfluid undergoing Ekman pumping is calculated self-consistently. The container responds to the back-reaction torque exerted by the viscous component of the superfluid and an arbitrary external torque. The resulting motion is described by a pair of coupled integral equations for which solutions are easily obtained numerically. If the container is initially accelerated impulsively then set free, it relaxes quasi-exponentially to a steady state over multiple time scales, which are a complex combination of the Ekman number, superfluid mutual friction coefficients, the superfluid density fraction, and the varying hydrodynamic torque at different latitudes. The spin-down of containers with relatively small moments of inertia (compared with that of the contained fluid) depends weakly on the above parameters and occurs faster than the Ekman time. When the fluid components are initially differentially rotating, the container can 'overshoot' its asymptotic value before increasing again. When a constant external torque is applied, the superfluid components rotate differentially and non-uniformly in the long term. For an oscillating external torque, the amplitude and phase of the oscillation are most sensitive to the driving frequency for containers with relatively small moments of inertia. Applications to superfluid helium experiments and neutron stars are also discussed.
机译:自洽地计算了充满两组分超流体的刚性容器在经过Ekman抽运后的耦合动力响应。容器响应由超流体的粘性成分施加的反作用扭矩和任意的外部扭矩。所产生的运动由一对耦合的积分方程描述,可通过数字轻松地获得解。如果首先将容器以脉冲方式加速然后放开,则它会在多个时间尺度上准指数地松弛到稳态,这是埃克曼数,超流体互摩擦系数,超流体密度分数和变化的水动力扭矩的复杂组合在不同的纬度。具有相对较小的惯性矩(与所容纳流体的惯性矩相比)的容器旋转下降在很大程度上取决于上述参数,并且发生的时间比埃克曼时间快。当流体成分最初进行差速旋转时,容器可以在再次增大之前“超调”其渐近值。当施加恒定的外部扭矩时,超流体组件会长期长期不均匀地旋转。对于振荡的外部扭矩,对于具有相对较小惯性矩的容器,振荡的幅度和相位对驱动频率最为敏感。还讨论了在超流氦实验和中子星中的应用。

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