Laser-induced topological spin switching in a 2D van der Waals magnet

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作者
Maya Khela
Maciej Da̧browski
Safe Khan
Paul S. Keatley
Ivan Verzhbitskiy
Goki Eda
Robert J. Hicken
Hidekazu Kurebayashi
Elton J. G. Santos
机构
[1] The University of Edinburgh,Institute for Condensed Matter Physics and Complex Systems, School of Physics and Astronomy
[2] University of Exeter,Department of Physics and Astronomy
[3] University College London,London Centre for Nanotechnology
[4] National University of Singapore,Department of Physics
[5] Centre for Advanced 2D Materials and Graphene Research Centre, Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore 117543
[6] National University of Singapore,Department of Electronic & Electrical Engineering
[7] UCL,WPI Advanced Institute for Materials Research
[8] Tohoku University,Higgs Centre for Theoretical Physics
[9] The University of Edinburgh,undefined
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摘要
Two-dimensional (2D) van der Waals (vdW) magnets represent one of the most promising horizons for energy-efficient spintronic applications because their broad range of electronic, magnetic and topological properties. However, little is known about the interplay between light and spin properties in vdW layers. Here we show that ultrafast laser excitation can not only generate different type of spin textures in CrGeTe3 vdW magnets but also induce a reversible transformation between them in a topological toggle switch mechanism. Our atomistic spin dynamics simulations and wide-field Kerr microscopy measurements show that different textures can be generated via high-intense laser pulses within the picosecond regime. The phase transformation between the different topological spin textures is obtained as additional laser pulses are applied to the system where the polarisation and final state of the spins can be controlled by external magnetic fields. Our results indicate laser-driven spin textures on 2D magnets as a pathway towards reconfigurable topological architectures at the atomistic level.
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