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Ferromagnetism in Diluted Magnetic Semiconductor (Ga,Mn)As Quantum Wires and Quantum Wells under the Influence of Photo-Excitation and Spin Wave Scattering

机译:受光和自旋波散射影响的稀释磁性半导体(Ga,Mn)As量子线和量子阱中的铁磁性

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摘要

We present a theoretical investigation of the influence of photo-excitation and spin wave scattering on magnetization of the (Ga,Mn)As diluted magnetic semiconductor (DMS) quantum wires (QWRs) and quantum wells (QWs). Double time temperature dependent Green’s function formalism is used for the description of dispersion and spectral density of the systems. Our analysis indicates that spin wave scattering plays an influential role in magnetism of both systems while application of light is insignificant in quantum wells. In the absence of spin wave scattering and at sufficiently low temperatures, a result corresponding to the specific heat of dominating electronic contributions in metals is obtained in QWs. In QWRs, however, this magnetic property is found to vary with T1/2 and α2T1/2 so that light matter coupling has a leading effect on lower temperatures, where α is the light matter coupling factor and T is the temperature.
机译:我们提出了光激发和自旋波散射对(Ga,Mn)As稀磁半导体(DMS)量子线(QWRs)和量子阱(QWs)磁化强度影响的理论研究。与温度相关的时间依赖格林函数的形式,用于描述系统的色散和光谱密度。我们的分析表明,自旋波散射在两个系统的磁性中都起着重要作用,而光在量子阱中的应用却微不足道。在没有自旋波散射且温度足够低的情况下,可以在QW中获得与金属中主要电子贡献的比热相对应的结果。然而,在QWR中,发现该磁性随T1 / 2和α2T1/ 2的变化而变化,因此光物质耦合对较低的温度起主要作用,其中α是光物质耦合因子,T是温度。

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