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Electronic quantum dot states induced through photon emission

机译:通过光子发射引起的电子量子点态

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We review the optics of negatively charged excitons in self assembled InAs/GaAs quantum dots. The charging state of a quantum dot was tuned electrostatically in a field effect structure. We investigated in this way the neutral exciton as well as the negatively singly, doubly and triply charged excitons, namely the X~0, X~(1-), X~(2-) and X~(3-) excitons. A Zeeman splitting and a diamagnetic shift in the photoluminescence emission line is clearly observed for X~0, X~(1-) and X~(2-) exciton as a function of magnetic field. In contrast the triply negatively charged exciton shows a completely different magnetic behaviour. Here, under the influence of a high magnetic field, the quantum dot electronic states are found to be hybridized with the continuum of states in the wetting layer. Such a hybridization turns out to be induced by photon emission of the X~(3-) exciton.
机译:我们回顾了自组装InAs / GaAs量子点中带负电荷的激子的光学特性。量子点的电荷状态在场效应结构中被静电调节。我们以这种方式研究了中性激子以及带负电荷,双电荷和三电荷的激子,即X〜0,X〜(1-),X〜(2-)和X〜(3-)激子。在X〜0,X〜(1-)和X〜(2-)激子随磁场变化的情况下,在光致发光发射线上明显观察到塞曼分裂和反磁性位移。相反,三重带负电的激子表现出完全不同的磁行为。在此,在高磁场的影响下,发现量子点电子状态与润湿层中的状态的连续体混合。事实证明,这种杂化是由X〜(3-)激子的光子发射引起的。

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