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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Oscillations of induced magnetization in superconductor-ferromagnet heterostructures
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Oscillations of induced magnetization in superconductor-ferromagnet heterostructures

机译:超导体-铁磁体异质结构中感应磁化的振荡

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We study a change in the spin magnetization of a superconductor-ferromagnet (SF) heterostructure, when temperature is lowered below the superconducting transition temperature. It is assumed that the SF interface is smooth on the atomic scale and the mean free path is not too short. Solving the Eilenberger equation we show that the spin magnetic moment induced in the superconductor is an oscillating sign-changing function of the product hd of the exchange field h and the thickness d of the ferromagnet. Therefore the total spin magnetic moment of the system in the superconducting state can be not only smaller (screening) but also greater (antiscreening) than that in the normal state, in contrast with the case of highly disordered (diffusive) systems, where only screening is possible. This surprising effect is due to peculiar periodic properties of localized Andreev states in the system. It is most pronounced in systems with ideal ballistic transport (no bulk disorder in the samples, smooth ideally transparent interface), however these ideal conditions are not crucial for the very existence of the effect. We show that oscillations exist (although suppressed) even for arbitrary low interface transparency and in the presence of bulk disorder, provided that h τ 1 (τ is the mean free path). At low interface transparency we solve the problem for arbitrary strength of disorder and obtain oscillating magnetization in ballistic regime ( h τ ) and nonoscillating magnetization in diffusive one (h τ 1) as limiting cases of one formula.
机译:我们研究了当温度降低到超导转变温度以下时,超导体-铁磁体(SF)异质结构的自旋磁化强度的变化。假定SF界面在原子尺度上是平滑的,并且平均自由程不太短。求解Eilenberger方程,我们表明在超导体中感应的自旋磁矩是交换场h乘积hd和铁磁体厚度d的振荡符号转换函数。因此,与高度无序(扩散)系统的情况相比,超导状态下系统的总自旋磁矩不仅比正常状态下的更小(屏蔽),而且更大(反屏蔽)。是可能的。这种令人惊讶的效果是由于系统中局部Andreev状态的特殊周期性所致。在具有理想弹道传输系统(样本中没有体积紊乱,光滑,理想透明的界面)的系统中,这种现象最为明显,但是这些理想条件对于效果的存在并不关键。我们证明,即使hτ 1(τ是平均自由程),对于任意低的界面透明度和存在体积失调,也存在(尽管被抑制)振荡。在低界面透明度下,我们解决了无序强度的问题,并获得了在弹道状态下的振荡磁化强度(hτ)和在扩散态的非振荡磁化强度(hτ 1)作为一个公式的极限情况。

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