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Laser-induced magnetization dynamics in a van der Waals ferromagnetic Cr2Ge2Te6 nanoflake
23
Citations
28
References
2020
Year
Magnetic PropertiesEngineeringLow-dimensional MagnetismMagnetic ResonanceSpin DynamicMagnetic MaterialsMagnetismSpin Precession DynamicsMicromagneticsMaterials SciencePhysicsNanotechnologyLow-dimensional SystemsMagnetoelasticityMagnetic MaterialMicro-magnetic ModelingQuantum MagnetismSpintronicsFerromagnetismLaser-induced Magnetization DynamicsNatural SciencesApplied PhysicsCondensed Matter PhysicsMagnetic PropertyEffective Damping Coefficient
Laser-induced magnetization dynamics is quantitatively investigated in a van der Waals ferromagnetic Cr2Ge2Te6 nanoflake by means of time-resolved Faraday rotation. Under ferromagnetic resonance conditions, the angular dependence of spin precession dynamics gives rise to a perpendicular magnetic anisotropy with an effective field of 125 ± 8 mT. We further determine the field dependence of the effective damping coefficient, which is dominated by the inhomogeneous broadening of magnetic anisotropy in the regime of a small magnetic field while it diminishes to an intrinsic value of 0.006 ± 0.002 at high fields.
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