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首页> 外文期刊>Journal of Applied Physics >Redshift of the excited state due to a nondegenerate biexciton in self-organized quantum dots
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Redshift of the excited state due to a nondegenerate biexciton in self-organized quantum dots

机译:自组织量子点中的非简并双激子引起的激发态红移

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Using femtosecond differential transmission spectroscopy, we observed a "nondegenerate" biexciton, consisting of an electron-hole pair in the dot ground state and an electron-hole pair in the excited state, in InGaAs self-organized quantum dots. We resonantly pumped the ground state transition in the quantum dots and observed an induced resonance in the probe differential transmission spectrum near the first excited-state transition, which we attribute to the formation of a nondegenerate biexciton state. The binding energy of 15 meV does not change with excitation power, thus reflecting a genuine feature of few-particle states. Our theoretical model calculations show good agreement with these experimental results. When a prepulse is used to generate a population inversion in the quantum dots, we also observed the effects of nondegenerate biexcitonic correlations in differential transmission.
机译:使用飞秒差分透射光谱,我们在InGaAs自组织量子点中观察到了“非简并”双激子,它由处于点基态的电子-空穴对和处于激发态的电子-空穴对组成。我们共振地在量子点中泵浦了基态跃迁,并在接近第一激发态跃迁的探针差分传输光谱中观察到感应共振,这归因于非简并双激子态的形成。 15 meV的结合能不会随激发功率而变化,因此反映出少数粒子状态的真正特征。我们的理论模型计算表明与这些实验结果吻合良好。当使用预脉冲在量子点中生成种群反转时,我们还观察到了非简并双激子相关在差分传输中的作用。

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