Litcius/Paper detail

Current-assisted magnetization reversal in Fe<sub>3</sub>GeTe<sub>2</sub> van der Waals homojunctions

Hailong Lin, Faguang Yan, Ce Hu, Yuanhui Zheng, Yu Sheng, Wenkai Zhu, Ziao Wang, Houzhi Zheng, Kaiyou Wang

2022Nanoscale20 citationsDOI

Abstract

(FGT), due to its outstanding properties such as metallicity, high Curie temperature and strong perpendicular magnetic anisotropy, has quickly emerged as a candidate with the most potential for the fabrication of all-vdW spintronic devices. Here, we fabricated a simple vertical homojunction based on two few-layer exfoliated FGT flakes. Under a certain range of external magnetic fields, the magnetization reversal can be achieved by applying a negative or positive pulse current, which can reduce the coercivity through the spin orbit torque of FGT itself in addition to the Joule heat. Moreover, the asymmetrical switching current is caused by the spin transfer torque in the homojunction. As the temperature increases, the magnetization reversal can be observed at a smaller external magnetic field. Our demonstrations of the current-assisted magnetization reversal under a magnetic field in all-vdW structures may provide support for the potential application of vdW magnetism.

Topics & Concepts

Condensed matter physicsMagnetizationHomojunctionMaterials scienceSpintronicsMagnetismCoercivityCurie temperaturevan der Waals forceMagnetocrystalline anisotropyFerromagnetismJoule heatingSpin-transfer torqueMagnetic anisotropyMagnetic fieldPhysicsDopingQuantum mechanicsComposite materialMolecule2D Materials and ApplicationsMagnetic properties of thin filmsZnO doping and properties