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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Theory of magneto-optical properties of neutral and charged excitons in GaAs/AlGaAs quantum dots
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Theory of magneto-optical properties of neutral and charged excitons in GaAs/AlGaAs quantum dots

机译:GaAs / Algaas量子点中性和带电激子磁光性能理论

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摘要

Detailed theoretical study of the magneto-optical properties of weakly confining GaAs/AlGaAs quantum dots is provided. We focus on the diamagnetic coefficient and the g factor of the neutral and the charged excitonic states, respectively, and their evolution with various dot sizes for the magnetic fields applied along the [001] direction. For the calculations we utilize the combination of k • p and the configuration interaction methods. We decompose the theory into four levels of precision, i.e.. (ⅰ) single-particle electron and hole states, (ⅱ) noninteracting electron-hole pair, (ⅲ) electron-hole pair constructed from the ground stale of both quasiparticles and interacting via the Coulomb interaction (i.e.. with minimal amount of correlation), and (ⅳ) that including the effect of correlation. The aforementioned approach allows us to pinpoint the dominant influence of various single-particle and multiparticle effects on the studied magneto-optical properties, allowing the characterization of experiments using models which are as simple as possible, yet retaining the detailed physical picture.
机译:提供了对弱限制GaAs / Algaas量子点的磁光学性质的详细理论研究。我们专注于中性和带电兴趣状态的抗磁系数和G因子,以及它们具有沿着[001]方向的磁场的各种点尺寸的演化。对于计算,我们利用K•P和配置交互方法的组合。我们将理论分解为四个精度,即。(Ⅰ)单颗粒电子和孔状态,(Ⅱ)非交互式电子 - 孔对,(Ⅲ)从两个Quasiply的地面陈降构成的电子 - 孔对并相互作用库仑相互作用(即,具有最小的相关量),(ⅳ)包括相关性的效果。上述方法允许我们确定各种单粒子和多粒子效应对所研究的磁光性质的主导影响,允许使用尽可能简单的模型的实验表征,但保留详细的物理图像。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2020年第12期|125412.1-125412.15|共15页
  • 作者单位

    Department of Condensed Matter Physics Faculty of Science Masaryk University Kotlarska 267/2 61137 Brno Czech Republic and Czech Metrology Institute Okruzni 31 63800 Brno Czech Republic;

    Department of Condensed Matter Physics Faculty of Science Masaryk University Kotlarska 267/2 61137 Brno Czech Republic and Czech Metrology Institute Okruzni 31 63800 Brno Czech Republic;

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