Kapran Olena M, Morari Roman, Golod Taras, Borodianskyi Evgenii A, Boian Vladimir, Prepelita Andrei, Klenov Nikolay, Sidorenko Anatoli S, Krasnov Vladimir M
Department of Physics, Stockholm University, AlbaNova University Center, SE-10691 Stockholm, Sweden.
Institute of Electronic Engineering and Nanotechnologies, MD2028 Chisinau, Moldova.
Beilstein J Nanotechnol. 2021 Aug 17;12:913-923. doi: 10.3762/bjnano.12.68. eCollection 2021.
Employment of the non-trivial proximity effect in superconductor/ferromagnet (S/F) heterostructures for the creation of novel superconducting devices requires accurate control of magnetic states in complex thin-film multilayers. In this work, we study experimentally in-plane transport properties of microstructured Nb/Co multilayers. We apply various transport characterization techniques, including magnetoresistance, Hall effect, and the first-order-reversal-curves (FORC) analysis. We demonstrate how FORC can be used for detailed in situ characterization of magnetic states. It reveals that upon reduction of the external field, the magnetization in ferromagnetic layers first rotates in a coherent scissor-like manner, then switches abruptly into the antiparallel state and after that splits into the polydomain state, which gradually turns into the opposite parallel state. The polydomain state is manifested by a profound enhancement of resistance caused by a flux-flow phenomenon, triggered by domain stray fields. The scissor state represents the noncollinear magnetic state in which the unconventional odd-frequency spin-triplet order parameter should appear. The non-hysteretic nature of this state allows for reversible tuning of the magnetic orientation. Thus, we identify the range of parameters and the procedure for in situ control of devices based on S/F heterostructures.
利用超导体/铁磁体(S/F)异质结构中的非平凡邻近效应来制造新型超导器件,需要精确控制复杂薄膜多层结构中的磁态。在这项工作中,我们通过实验研究了微结构Nb/Co多层膜的面内输运性质。我们应用了各种输运表征技术,包括磁电阻、霍尔效应和一阶反转曲线(FORC)分析。我们展示了如何使用FORC对磁态进行详细的原位表征。结果表明,在外部磁场减弱时,铁磁层中的磁化首先以类似剪刀的连贯方式旋转,然后突然转变为反平行状态,之后分裂为多畴状态,该状态逐渐转变为相反的平行状态。多畴状态表现为由于畴杂散场引发的磁通流动现象导致电阻显著增强。剪刀状态代表非共线磁态,其中应出现非常规的奇频自旋三重态序参量。这种状态的非滞后性质允许对磁取向进行可逆调节。因此,我们确定了基于S/F异质结构的器件原位控制的参数范围和程序。