【2h】

Characterization of reconnecting vortices in superfluid helium

机译:超流氦中重连涡的表征

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摘要

When two vortices cross, each of them breaks into two parts and exchanges part of itself for part of the other. This process, called vortex reconnection, occurs in classical and superfluids, and in magnetized plasmas and superconductors. We present the first experimental observations of reconnection between quantized vortices in superfluid helium. We do so by imaging micrometer-sized solid hydrogen particles trapped on quantized vortex cores and by inferring the occurrence of reconnection from the motions of groups of recoiling particles. We show that the distance separating particles on the just-reconnected vortex lines grows as a power law in time. The average value of the scaling exponent is approximately ½, consistent with the self-similar evolution of the vortices.
机译:当两个涡流交叉时,每个涡流都分成两部分,并将其一部分交换为另一部分。此过程称为涡旋重连,发生在经典流体和超流体中,以及磁化等离子体和超导体中。我们提出了超流氦中定量涡旋之间重新连接的第一个实验观察。我们通过对捕获在量化涡旋核上的微米级固体氢粒子进行成像,并根据反冲粒子组的运动推断重新连接的发生,来做到这一点。我们表明,刚刚重新连接的涡旋线上分离粒子的距离随着时间的幂律而增长。标度指数的平均值约为½,与涡旋的自相似演化一致。

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