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The generation of particles to observe quantized vortex dynamics in superfluid helium

机译:观察超流氦中涡旋动力学量化的粒子生成

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摘要

We describe a method to prepare a sample of superfluid helium-4 with hydrogen particles suspended within it. The method is to dilute hydrogen gas with helium at room temperature, and bubble the mixture through liquid helium at a temperature above the superfluid phase transition temperature, T_(lambda) approx = 2.17 K. The procedure yields a suspension of micron-sized particles whose total volume is about 10~5 times smaller than the fluid volume. The fluid and suspension are then cooled to a temperature below T_(lambda). We show that the particles, so prepared in superfluid helium, are useful for studying superfluid flows and, in particular, the dynamics of quantized vortices. In addition, the particle-superfluid helium system is rich in not yet fully explained interactions. We review preliminary investigations that include observing the vortex lattice in rotating helium, vortex reconnection in quantized vortex turbulence, and vortex ring decay. These data illustrate the basic mechanisms of dissipation in superfluid turbulence.
机译:我们描述了一种制备超流体氦4样品的方法,该样品中悬浮有氢粒子。该方法是在室温下用氦气稀释氢气,并在高于超流体相变温度T_λ= 2.17 K的温度下将混合物鼓泡通过液氦。该过程产生了微米级颗粒的悬浮液总体积比流体体积小10〜5倍。然后将流体和悬浮液冷却至低于T_λ的温度。我们表明,在超流体氦中如此制备的颗粒可用于研究超流体流动,特别是量化涡旋的动力学。另外,粒子-超流体氦系统富含尚未充分解释的相互作用。我们回顾了初步研究,包括观察旋转氦气中的涡旋晶格,量化涡旋湍流中的涡旋重连以及涡旋环衰变。这些数据说明了超流体湍流耗散的基本机理。

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