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Pair breaking effects on upper critical fields in ferromagnet/superconductor layered structures

机译:配对破坏对铁磁体/超导体层状结构中的上临界场的影响

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The influence of magnetic and spin-orbit impurity scattering on the upper critical fields H-c2 in ferromagnet/superconductor (F/S) hybrid structures is theoretically investigated. The generalized Usadel equations which are a pair of coupled equations containing additional spin-orbit and magnetic impurity scattering are shown to be decoupled in spite of the coupling interaction between the spin exchange field and the spin-orbit interaction in the F layer. The temperature dependence of the parallel upper critical field in the F/S bilayer is shown to be less prominent in the presence of the spin-orbit and the spin-flip scattering processes. The interplay between the zero- and pi-phases is analyzed in the case of the F/S multilayers. The pi-pliase formation is found to be feasible through the strong oscillation of the zero temperature upper critical fields versus the thickness of the ferromagnetic layer. Our results which are valid in wide range of parameters may be very important for comparison with experimental data. (c) 2007 Elsevier B.V. All rights reserved.
机译:理论上研究了磁和自旋轨道杂质散射对铁磁体/超导体(F / S)混合结构中的上临界场H-c2的影响。尽管在F层中自旋交换场和自旋轨道相互作用之间存在耦合相互作用,但通用的Usadel方程是一对包含额外的自旋轨道和磁性杂质散射的耦合方程,被证明是解耦的。在自旋轨道和自旋翻转散射过程的存在下,F / S双层中平行的上临界场的温度依赖性显示得不那么明显。在F / S多层的情况下,分析了零相和pi相之间的相互作用。通过零温度上临界场相对于铁磁层的厚度的强烈振荡,发现π-倍蛋白酶的形成是可行的。我们的结果在广泛的参数范围内有效,对于与实验数据进行比较可能非常重要。 (c)2007 Elsevier B.V.保留所有权利。

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