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The influence of alloying or interdiffusion on the superconducting properties of ferromagnet/superconductor layered systems

机译:合金化或互扩散对铁磁体/超导体层状系统超导性能的影响

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We present the theoretical investigation of alloying or interdiffusion at the interface on the superconducting properties of ferromagnet/superconductor (S/F) layered films. The intermixed layer is modeled by the nonsuperconducting alloy (A) layer, which is characterized by strong scattering on paramagnetic impurities. The linearized Usadel equations are derived, which take into account the exchange scattering of excitations on the paramagnetic impurities in the alloyed layer. The superconducting transition temperature of the S/A/F trilayer is calculated as a function of spin-dependent scattering strength and thickness of A-layer. The nonmonotonic behavior of superconducting T, at the onset of ferromagnetism in F-layer is discussed in the framework of the presented theory. The oscillations of T. due to ferromagnetic layer thickness variation, and additional influence introduced by an alloy layer, are investigated. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 37]
机译:我们目前在铁磁体/超导体(S / F)层状膜的超导性能界面上合金化或互扩散的理论研究。混合层由非超导合金(A)层建模,其特征在于在顺磁性杂质上的强散射。推导了线性化的Usadel方程,其中考虑了合金层中顺磁性杂质上激发的交换散射。计算S / A / F三层的超导转变温度是自旋相关的散射强度和A层厚度的函数。在所提出的理论框架内,讨论了超导T在F层铁磁性发生时的非单调行为。研究了由于铁磁层厚度变化而引起的T.振荡,以及合金层引入的其他影响。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:37]

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