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Features of spin dynamics of magnetic ions and charge carriers in self-organized quantum dots CdSe/ZnMnSe

机译:自组织量子点CDSE / Znmnse中磁离子和电荷载体自旋动力学的特征

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Self-organized disk-shaped quantum dots of CdSe embedded in diluted magnetic ZnMnSe barrier were studied by means of pump-probe time-resolved Kerr rotation (TRKR) technique at low temperature T = 7 K. In absence of the external magnetic field TRKR signal exhibits long-living spin dynamics with the decay time exceeding the period between laser pulses. Such spin dynamics is not typical for diluted magnetic semiconductors and nano-structures based on them and could be a trace of a bound magnetic polaron. Resonant spin amplification measured in transversal magnetic field up to 1 T shows the only one peak near B = 0. In B = 1 T the long-living non-precessing signal practically vanishes, while the precessing one appears with the Larmor frequency corresponding to the Mn~(2+) ions' net spin precession around the magnetic field. It was found that the signal consists of three components with slightly different precession frequencies that could be due to the fine structure of the manganese spin sublevels occurring because of a stress in quantum dots.
机译:通过泵探针在低温T = 7k的泵探针时间分辨的克尔旋转(TRKR)技术,研究了嵌入稀释磁性Znmnse屏障的CDSE的自组织盘形量子点。在不存在外部磁场Trkr信号的情况下展示长期旋转动力学,衰减时间超过激光脉冲之间的时间。这种自旋动力学不是基于它们的稀释磁半导体和纳米结构的典型,并且可以是束缚磁极化的迹迹。在横向磁场中测量的共振旋转放大可达1 T显示近B = 0附近的一个峰值。在B = 1 T中,长效的非精确信号实际消失,而预先出现在对应的传法频率磁场周围的Mn〜(2+)离子的净旋转预振。发现信号由三个组件组成,具有略微不同的预测频率,这可能是由于由于量子点中的应力而发生的锰旋转的精细结构。

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