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Control of Coherent Magnetization Precession in GaMnAs by Ultrafast Optical Excitation

机译:超快光学激发控制Gamnas相干磁化预测

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We report comprehensive temperature and photoexcitation intensity dependent studies of the photoinduced magnetization precession in Ga_(1-x)Mn_xAs (x = 0.035) by time-resolved Kerr rotation measurements. We observe coherent oscillations of local Mn spins triggered by an ultrafast photo-induced reorientation of the easy axis due to changes in the magnetic anisotropy. The amplitude saturation of these oscillations above certain pump intensity is indicative of stabilization of the magnetic easy axis orientation on temperatures above ~Tc/2. We find that the observed magnetization precession damping (Gilbert damping) is strongly dependent on pump laser intensity, but largely independent of ambient temperature.
机译:通过时间分辨的KERR旋转测量报告GA_(1-x)MN_XAS(x = 0.035)的综合温度和光屏蔽强度研究的综合温度和运动光度依赖性研究。我们观察由于磁各向异性的变化导致的超快轴的超快照片诱导的易轴的重新定向触发的局部Mn旋转的相干振荡。这些振荡的幅度饱和度在某些泵强度上方表示在〜tc / 2的温度上稳定磁体易轴取向。我们发现观察到的磁化预测阻尼(Gilbert阻尼)强烈依赖于泵激光强度,但在很大程度上与环境温度无关。

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