论文标题
超导体/铁磁性NB/CO多层的磁态的传输表征
Transport characterization of magnetic states in Superconductor/Ferromagnet Nb/Co multilayers
论文作者
论文摘要
在超导剂/铁磁体(S/F)异质结构中创建新型超导设备中非平凡的近端效应的使用需要准确地控制组成此类设备的复杂薄膜多层中的磁性。在这项工作中,我们研究了微观结构NB/CO多层的实验面内运输特性。我们将各种实验技术应用于多层的表征,包括各向异性磁场,霍尔效应和一阶反转曲线分析。我们证明,这些技术的组合可以提供有关多层磁状态的详细知识。特别是,我们确定了相干旋转的单域剪刀状状态的存在范围。可以预见的是,在这种非连接磁状态下,应出现非常规奇数自旋序参数参数。该状态的非宫颈特性允许对磁取向进行可逆调整。因此,我们确定了基于此类S/F异质结构的参数范围和设备可控操作的过程。
Employment of the non-trivial proximity effect in Superconductor/Ferromagnet (S/F) heterostructures for creation of novel superconducting devices requires an accurate control of magnetic states in complex thin-film multilayers composing such devices. In this work we study experimentally in-plane transport properties of micro-structured Nb/Co multilayers. We apply various experimental techniques for characterization of multilayers, including the anisotropic magnetoresistance, the Hall effect and the first-order-reversal-curves analysis. We demonstrate that a combination of those techniques can provide a detailed knowledge of the magnetic state of the multilayer. In particular, we identify the range of existence of the coherently rotating, monodomain scissor-like state. It is anticipated, that in this noncollinear magnetic state the unconventional odd-frequency spin-triplet order parameter should appear. The non-hystertic nature of this state allows reversible tuning of the magnetic orientation. Thus, we identify the range of parameters and the procedure for controllable operation of devices based on such S/F heterostructures.