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Comparison of micromagnetic parameters of the ferromagnetic semiconductors (Ga,Mn)(As,P) and (Ga,Mn)As

机译:铁磁半导体(Ga,Mn)(As,P)和(Ga,Mn)As的微磁参数比较

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摘要

We report on the determination of micromagnetic parameters of epilayers of the ferromagnetic semiconductor (Ga,Mn)As, which has an easy axis in the sample plane, and (Ga,Mn)(As,P), which has an easy axis perpendicular to the sample plane.We use an optical analog of ferromagnetic resonancewhere the laser-pulse-induced precession of magnetization is measured directly in the time domain. By the analysis of a single set of pump-and-probe magneto-optical data, we determined the magnetic anisotropy fields, the spin stiffness, and the Gilbert damping constant in these two materials. We show that incorporation of 10% of phosphorus in (Ga,Mn)As with 6% of manganese leads not only to the expected sign change of the perpendicular-to-plane anisotropy field but also to an increase of the Gilbert damping and to a reduction of the spin stiffness. The observed changes in the micromagnetic parameters upon incorporating P in (Ga,Mn)As are consistent with the reduced hole density, conductivity, and Curie temperature of the (Ga,Mn)(As,P) material.We also show that the apparent magnetization precession damping is stronger for the n=1 spinwave resonance mode than for the n=0 uniform magnetization precession mode.
机译:我们报告了确定在样品平面中具有易轴的铁磁半导体(Ga,Mn)As和(Ga,Mn)(As,P)的外层微磁参数的确定的信息我们使用了铁磁共振的光学类似物,其中在时域中直接测量了激光脉冲引起的磁化进动。通过分析一组泵浦和探针磁光数据,我们确定了这两种材料的磁各向异性场,自旋刚度和吉尔伯特阻尼常数。我们表明,(Ga,Mn)As中10%的磷与6%的锰的结合不仅导致垂直于平面各向异性场的预期符号变化,而且还导致Gilbert阻尼的增加和降低旋转刚度。在(Ga,Mn)As中掺入P时观察到的微磁参数变化与(Ga,Mn)(As,P)材料的降低的空穴密度,电导率和居里温度一致。 n = 1自旋波共振模式的磁化进动阻尼比n = 0均匀磁化旋进模式的强。

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