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Imaging the vortex-lattice melting process in the presence of disorder

机译:在存在障碍的情况下对涡旋-晶格融化过程进行成像

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General arguments suggest that first-order phase transitions become less sharp in the presence of weak disorder, while extensive disorder can transform them into second-order transitions; but the atomic level details of this process are not clear. The vortex lattice in superconductors provides a unique system in which to study the first-order transition on an inter-particle scale, as well as over a wide range of particle densities. Here we use a differential magneto-optical technique to obtain direct experimental visualization of the melting process in a disordered superconductor. The images reveal complex behaviour in nucleation, pattern formation, and solid-liquid interface coarsening and pinning. Although the local melting is found to be first-order, a global rounding of the transition is observed; this results from a disorder-induced broad distribution of local melting temperatures, at scales down to the mesoscopic level. We also resolve local hysteretic supercooling of microscopic liquid domains, a non-equilibrium process that occurs only at selected sites where the disorder-modified melting temperature has a local maximum. By revealing the nucleation process, we are able to experimentally evaluate the solid-liquid surface tension, which we find to be extremely small.
机译:一般的论点表明,在存在弱无序的情况下,一阶相变变得不那么尖锐,而广泛的无序可以将它们转变为二阶相变。但是此过程的原子级细节尚不清楚。超导体中的涡旋晶格提供了一个独特的系统,可在其中研究粒子间尺度以及广泛的粒子密度范围内的一阶跃迁。在这里,我们使用差分磁光技术来获得无序超导体中熔化过程的直接实验可视化。图像揭示了成核,图案形成以及固液界面粗化和钉扎的复杂行为。尽管发现局部熔化是一阶的,但观察到转变的全局舍入;因此,可以发现该转变是全局的。这是由无序诱导的局部熔化温度的广泛分布导致的,其范围缩小到了介观水平。我们还解决了微观液体域的局部滞后过冷现象,这是一种非平衡过程,仅在选定的位置上发生,该位置的无序修饰的熔化温度具有局部最大值。通过揭示成核过程,我们能够通过实验评估固液表面张力,我们发现该张力非常小。

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