自旋波动魔鬼阶梯中的大反常霍尔效应

IF 5.4 1区 物理与天体物理 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Naoki Abe, Yuya Hano, Hiroaki Ishizuka, Yusuke Kozuka, Terumasa Tadano, Yoshihiro Tsujimoto, Kazunari Yamaura, Shintaro Ishiwata, Jun Fujioka
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引用次数: 0

摘要

当金属中的电子与特征自旋纹理相互作用时,会产生巨大的反常霍尔效应(AHE)。在以 Skyrmion 为代表的长程有序非共线性自旋纹理中,人们从标量-自旋-手性(SSC)的角度讨论了反常霍尔效应。即使在有热波动的顺磁态中,SSC 也会变得有效,但由此产生的 AHE 却非常小。在这里,我们报告了在共线反铁磁性金属 SrCo6O11 的魔鬼阶梯转变附近观察到的由自旋波动引起的巨大 AHE。在中等磁场条件下,AHE 在转变温度附近及以上非常突出,其中的反常霍尔角成为已知氧化物共线铁磁体/反铁磁体中的最高水平(>2%)。此外,反常霍尔电导率与电导率成二次方比例关系。这些结果表明,魔鬼阶梯转变所固有的热诱导孤子自旋缺陷促进了 SSC 诱导的偏斜散射。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Large anomalous Hall effect in spin fluctuating devil’s staircase

Large anomalous Hall effect in spin fluctuating devil’s staircase

Electrons in metals can show a giant anomalous Hall effect (AHE) when interacting with characteristic spin texture. The AHE has been discussed in terms of scalar-spin-chirality (SSC) in long-range-ordered noncollinear spin textures typified by Skyrmion. The SSC becomes effective even in the paramagnetic state with thermal fluctuations, but the resultant AHE has been limited to be very small. Here, we report the observation of large AHE caused by the spin fluctuation near the devil’s staircase transition in a collinear antiferromagnetic metal SrCo6O11. The AHE is prominent near and above the transition temperature at moderate magnetic fields, where the anomalous Hall angle becomes the highest level among known oxide collinear ferromagnets/antiferromagnets (>2%). Furthermore, the anomalous Hall conductivity is quadratically scaled to the conductivity. These results imply that the thermally induced solitonic spin defects inherent to the devil’s staircase transition promote SSC-induced skew scattering.

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来源期刊
npj Quantum Materials
npj Quantum Materials Materials Science-Electronic, Optical and Magnetic Materials
CiteScore
10.60
自引率
3.50%
发文量
107
审稿时长
6 weeks
期刊介绍: npj Quantum Materials is an open access journal that publishes works that significantly advance the understanding of quantum materials, including their fundamental properties, fabrication and applications.
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