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首页> 外文期刊>Journal of Luminescence >Coupling of quantum states in a single CdSe/ZnSe quantum dot molecule
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Coupling of quantum states in a single CdSe/ZnSe quantum dot molecule

机译:单个CdSe / ZnSe量子点分子中的量子态耦合

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We study the emission from exciton states in a single CdSe/ZnSe quantum dot molecule (QDM) with different separation distances between the upper and the lower dot by applying micro-photoluminescence spectroscopy at low temperature. The observed splitting of the emission peaks demonstrates the coupling of quantum states that results in the bonding and antibonding configurations of exciton states in the QDM. As the separation distance decreases, the coupling strength increases gradually and brings forth the red-shift of the emission peaks. Furthermore, the coupling strength exhibits a lower dependence on the separation distance compared with a Ⅲ-Ⅴ QDM. By pumping the sample with circularly polarized photons, we investigate the fine splitting that arises from the asymmetric disk-like shape of the dots.
机译:我们通过在低温下应用微光致发光光谱技术研究了单个CdSe / ZnSe量子点分子(QDM)中激子态的发射,该分子在上下点之间具有不同的分隔距离。观察到的发射峰分裂证明了量子态的耦合,从而导致了QDM中激子态的键合和反键构型。随着分离距离的减小,耦合强度逐渐增加,并导致发射峰的红移。此外,与Ⅲ-Ⅴ型QDM相比,耦合强度对分离距离的依赖性较低。通过用圆偏振光子泵送样品,我们研究了由点的不对称盘状形状引起的细裂。

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