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Supercooling across first-order phase transitions in vortex matter

机译:涡旋物质一阶相变的过冷

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Hysteresis in cycling through first-order phase transitions in vortex matter, akin to the well-studied phenomenon of supercooling of water, has been discussed in literature. Hysteresis can be seen while varying either temperature T or magnetic field H (and thus the density of vortices). Our recent work on phase transitions with two control variables shows that the observable region Of metastability of the supercooled phase would depend on the path followed in H - T space, and Will be larger when T is lowered at constant H compared to the case when H is lowered at constant T. We discuss the effect of isothermal field variations on metastable supercoold states produced By field-cooling. This path dependence is not a priori applicable to metastability caused by reduced Diffusivity or hindered kinetics
机译:在文献中已经讨论了类似于经过充分研究的水过冷现象的涡旋物质一阶相变循环中的磁滞现象。在改变温度T或磁场H(并因此改变涡旋密度)时,可以看到磁滞现象。我们最近对具有两个控制变量的相变的研究表明,过冷相的可观察到的亚稳态区域将取决于H-T空间中所遵循的路径,并且当H在恒定H时降低时,与H时相比会更大。在常数T时降低。我们讨论了等温场变化对由场冷却产生的亚稳态过冷状态的影响。这种路径依赖性不适用于因扩散系数降低或动力学受阻而引起的亚稳性

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