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通过自旋轨道转矩对范德华磁体CrGeTe进行操控。

Manipulation of the van der Waals Magnet CrGeTe by Spin-Orbit Torques.

作者信息

Gupta Vishakha, Cham Thow Min, Stiehl Gregory M, Bose Arnab, Mittelstaedt Joseph A, Kang Kaifei, Jiang Shengwei, Mak Kin Fai, Shan Jie, Buhrman Robert A, Ralph Daniel C

机构信息

Cornell University, Ithaca, New York 14850, United States.

Kavli Institute at Cornell, Ithaca, New York 14853, United States.

出版信息

Nano Lett. 2020 Oct 14;20(10):7482-7488. doi: 10.1021/acs.nanolett.0c02965. Epub 2020 Sep 30.

Abstract

We report measurements of current-induced thermoelectric and spin-orbit torque effects within devices in which multilayers of the semiconducting two-dimensional van der Waals magnet CrGeTe (CGT) are integrated with Pt and Ta metal overlayers. We show that the magnetic orientation of the CGT can be detected accurately either electrically (using an anomalous Hall effect) or optically (using magnetic circular dichroism) with good consistency. The samples exhibit large thermoelectric effects, but nevertheless, the spin-orbit torque can be measured quantitatively using the angle-dependent second harmonic Hall technique. For CGT/Pt, we measure the spin-orbit torque efficiency to be similar to conventional metallic-ferromagnet/Pt devices with the same Pt resistivity. The interfacial transparency for spin currents is therefore similar in both classes of devices. Our results demonstrate the promise of incorporating semiconducting 2D magnets within spin-orbitronic and magneto-thermal devices.

摘要

我们报告了在将半导体二维范德华磁体CrGeTe(CGT)多层与Pt和Ta金属覆盖层集成的器件中,电流诱导的热电和自旋轨道扭矩效应的测量结果。我们表明,CGT的磁取向可以通过电学方法(使用反常霍尔效应)或光学方法(使用磁圆二色性)准确检测,且一致性良好。样品表现出较大的热电效应,但尽管如此,自旋轨道扭矩仍可使用角度相关的二次谐波霍尔技术进行定量测量。对于CGT/Pt,我们测量到的自旋轨道扭矩效率与具有相同Pt电阻率的传统金属铁磁体/Pt器件相似。因此,两类器件中自旋电流的界面透明度相似。我们的结果证明了将半导体二维磁体纳入自旋轨道电子学和磁热器件的前景。

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