Effect of Reversible Flux Motion on the Estimation of Critical Current Density in Thin Superconductors Using the Third Harmonic Voltage Method

Yosuke Fukumoto, M. Kiuchi, E. Otabe, T. Matsushita, T. Kiss, Tomonori Watanabe, S. Miyata, A. Ibi, T. Muroga, Y. Yamada, Y. Shiohara
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引用次数: 1

Abstract

A significant overestimation of the critical current density Jc was discovered in a measuring method that utilizes induced third harmonic voltage for thin superconductors with a thickness less than 1 μm. This is speculated to be caused by the reversible motion of flux lines in the pinning potential, which reduces nonlinear properties such as hysteresis loss or third harmonic voltage. It is known that the effect of reversible flux motion is prominent for superconductors comparable to or smaller than the pinning correlation length at the sub-micrometer order called Campbell's AC penetration depth. In this paper, the effect of reversible flux motion on the estimation of Jc utilizing this method is investigated using a simplified Campbell's model for the force-displacement characteristics of flux lines, and the factor of overestimation of Jc is discussed.
可逆磁通运动对用三次谐波电压法估计超导体临界电流密度的影响
利用感应三次谐波电压对厚度小于1 μm的超导体进行测量,发现临界电流密度Jc有明显的高估。据推测,这是由于磁通线在钉住电位中的可逆运动造成的,这减少了磁滞损失或三次谐波电压等非线性特性。众所周知,可逆磁通运动的影响是突出的超导体相当或小于钉住相关长度在亚微米量级称为坎贝尔交流穿透深度。本文采用简化的坎贝尔通量线力-位移特性模型,研究了可逆通量运动对利用该方法估计Jc的影响,并讨论了Jc高估的因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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