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Investigating the superconductor-insulator transition in thin films using drag resistance: Theoretical analysis of a proposed experiment

机译:使用抗阻力研究薄膜中的超导体-绝缘体转变:拟议实验的理论分析

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摘要

The magnetically driven superconductor-insulator transition in amorphous thin films (e.g., InO and Ta) exhibits several mysterious phenomena, such as a putative metallic phase and a huge magnetoresistance peak. Unfortunately, several conflicting categories of theories, particularly quantum-vortex condensation, and normal region percolation, explain key observations equally well. We present a experimental setup, an amorphous thin-film bilayer, where a drag resistance measurement would clarify the role quantum vortices play in the transition, and hence decisively point to the correct picture. We provide a thorough analysis of the device, which shows that the vortex paradigm gives rise to a drag with an opposite sign and orders of magnitude larger than the drag measured if competing paradigms apply.udud
机译:非晶薄膜(例如InO和Ta)中的磁驱动超导体-绝缘体跃迁表现出一些神秘现象,例如推定的金属相和巨大的磁阻峰。不幸的是,一些相互矛盾的理论类别,尤其是量子涡旋凝聚和正常区域渗流,对关键的观察结果也能很好地解释。我们提出了一种实验装置,即非晶态薄膜双层,其中的抗阻力测量将阐明量子涡旋在过渡过程中所起的作用,从而果断地指向正确的图像。我们提供了对该设备的详尽分析,结果表明,涡旋范式产生的阻力与符号相反,并且比适用竞争范式时所测得的阻力大几个数量级。

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  • 年度 2009
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  • 正文语种 {"code":"en","name":"English","id":9}
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