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Non-magnetic origin of spin Hall magnetoresistance-like signals in Pt films and epitaxial NiO/Pt bilayers

机译:Pt膜和外延NiO / Pt双层中类似自旋霍尔磁阻信号的非磁性起源

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Electrical control of magnetic order in antiferromagnetic insulators (AFIs) using a Pt overlayer as a spin current source has been recently reported, but detecting and understanding the nature of current-induced switching in AFIs remain a challenge. Here, we examine the origin of spin Hall magnetoresistance-like signals measured in a standard Hall bar geometry, which have recently been taken as evidence of current-induced switching of the antiferromagnetic order in Pt/AFI bilayers. We show that transverse voltage signals consistent with both the partial switching and toggle switching of the Neel vector in epitaxial Pt/NiO bilayers on Al2O3 are also present in Pt/Al2O3 in which the AFI is absent. We show that these signals have a thermal origin and arise from (i) transient changes in the current distribution due to nonuniform Joule heating and (ii) irreversible changes due to electromigration at elevated current densities, accompanied by long-term creep. These results suggest that more sophisticated techniques that directly probe the magnetic order are required to reliably exclude transport artifacts and thus infer information about the antiferromagnetic order in such systems.
机译:最近已经报道了使用Pt覆盖层作为自旋电流源对反铁磁绝缘体(AFI)中的磁序进行电控制的方法,但是检测和理解AFI中电流感应开关的性质仍然是一个挑战。在这里,我们检查了以标准霍尔棒几何形状测量的自旋霍尔磁阻信号的起源,该信号最近已被用作Pt / AFI双层中反铁磁有序电流感应开关的证据。我们表明,在Al2O3上外延Pt / NiO双层中,与Neel矢量的部分切换和切换切换一致的横向电压信号也出现在AFI缺失的Pt / Al2O3中。我们表明,这些信号具有热源,并且是由于(i)焦耳加热不均匀引起的电流分布瞬态变化,以及(ii)由于电流密度升高引起的电迁移引起的不可逆变化,并伴随着长期蠕变。这些结果表明,需要直接探测磁阶的更复杂的技术来可靠地排除传输伪像,从而推断出此类系统中有关反铁磁阶的信息。

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