在正常的金属超导体结构中,由于表面束缚态,自旋泵浦大增强

M. Silaev
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引用次数: 13

摘要

我们发现自旋从铁磁绝缘体泵送到相邻的金属自旋汇可以被超导相关性强烈地激发。造成这种效应的关键物理机制是在铁磁绝缘体/超导体界面上存在准粒子表面态。我们考虑当这些状态出现时的最小模型,因为在界面法向层内抑制了配对常数。对于薄的法向层,我们得到了最近在这种系统中观察到的吉尔伯特阻尼系数的强烈峰值温度依赖性。对于较厚的法向层,吉尔伯特阻尼单调增加,直至温度远低于临界温度。该模型为通过制造普通金属/超导体混合自旋汇来控制自旋泵浦的温度依赖性铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Large enhancement of spin pumping due to the surface bound states in normal metal–superconductor structures
We show that the spin pumping from ferromagnetic insulator into the adjacent metallic spin sink can be strongly stimulated by the superconducting correlations. The key physical mechanism responsible for this effect is the presence of quasiparticle surface states at the ferromagnetic insulator/superconductor interface. We consider the minimal model when these states appear because of the suppressed pairing constant within the interfacial normal layer. For thin normal layers we obtain a strongly peaked temperature dependence of the Gilbert damping coefficient which has been recently observed in such systems. For thicker normal layers the Gilbert damping monotonically increases down to the temperatures much smaller than the critical one. The suggested model paves the way to controlling the temperature dependence of the spin pumping by fabricating hybrid normal metal/superconductor spin sinks.
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