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WEAKLY CORRELATED EXCITON PAIR STATES IN LARGE QUANTUM DOTS

机译:大量子点中的弱相关激子对态

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We present a calculation of the two-exciton states in semiconductor quantum dots much larger in size than the exciton Bohr radius, and identify a weakly correlated exciton pair state that has a large oscillator strength, increasing proportionately to the volume of the quantum dot. This state is shown to be responsible for the saturation of the size dependence of the resonant excitonic optical nonlinearity. It also provides a satisfactory understanding of the blueshift of the excited-state absorption in quantum dots. These results and the biexciton binding energy and oscillator strength are in good agreement with reported experimental results on CuCl. [References: 19]
机译:我们提出了一种大小大于激子玻尔半径的半导体量子点中的两个激子态的计算方法,并确定了一个弱关联的激子对态,该态对具有大的振荡器强度,与量子点的体积成比例地增加。示出了该状态导致共振激子光学非线性的尺寸依赖性的饱和。它还提供了对量子点中激发态吸收的蓝移的令人满意的理解。这些结果以及双激子结合能和振子强度与在CuCl上报道的实验结果非常吻合。 [参考:19]

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