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在铌超导转变温度以下的图案化镍/铌双层结构的非常规畴壁磁电阻。

Unconventional domain wall magnetoresistance of patterned Ni/Nb bilayer structures below superconducting transition temperature of Nb.

作者信息

Bhatia Ekta, Hussain Zainab, Reddy V Raghavendra, Barber Zoe H, Senapati Kartik

机构信息

School of Physical Sciences, National Institute of Science Education and Research (NISER), HBNI, Bhubaneswar, Odisha, 752050, India.

UGC-DAE Consortium for Scientific Research, Indore Centre, 452017, India.

出版信息

J Phys Condens Matter. 2021 Jun 7;33(29). doi: 10.1088/1361-648X/ac0022.

Abstract

Scattering of spin-up and spin-down electrons while passing through a ferromagnetic domain wall (DW) leads to an additional resistance for transport current, usually observed prominently in constricted magnetic structures. In this report we use the resistance of the DW as a probe to find an indirect signatures of the theoretically predicted spin-singlet supercurrent to spin-triplet supercurrent conversion effect of ferromagnetic DWs. Here we examine the DW induced resistance in Ni stripe in a bilayer Ni/Nb geometry in the normal state and in the superconducting state of Nb. By making a 3m wide gap in the top Nb layer we routed the transport current through the Ni layer in the normal state and in the superconducting state of Nb. In the normal state of Nb, in-field transport measurements showed a clear domain wall magneto-resistance (DWMR) peak of amplitude ∼5.9 mΩ near the coercive field, where the DW density is expected to be maximum. Interestingly, however, below the superconducting transition temperature of Nb, the DWMR peak of the Ni layer showed a sharp drop in the field range where the number of DWs become maximum. This observation may be a possible signature of magnetic DW induced spin-triplet correlations in the Ni layer due to the direct injection of spin-singlet Cooper pairs from Nb into the magnetic DWs.

摘要

自旋向上和自旋向下的电子在穿过铁磁畴壁(DW)时的散射会导致传输电流产生额外电阻,这一现象通常在受限磁结构中显著观察到。在本报告中,我们利用畴壁电阻作为探针,来寻找铁磁畴壁理论预测的自旋单重态超电流到自旋三重态超电流转换效应的间接特征。在此,我们研究了双层Ni/Nb结构中正常态和Nb超导态下Ni条带中由畴壁引起的电阻。通过在顶部Nb层中制造一个3m宽的间隙,我们使传输电流在正常态和Nb超导态下通过Ni层。在Nb的正常态下,场中传输测量显示在矫顽场附近有一个幅度约为5.9mΩ的清晰畴壁磁电阻(DWMR)峰,预计此时畴壁密度最大。然而,有趣的是,在Nb的超导转变温度以下,Ni层的DWMR峰在畴壁数量达到最大的场范围内出现了急剧下降。这一观察结果可能是由于自旋单重态库珀对从Nb直接注入到磁畴壁中,导致Ni层中磁畴壁诱导自旋三重态关联的一个可能特征。

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