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Size- dependent exciton substructure in CdSe nanoplatelets and its relation to photoluminescence dynamics

机译:大小——依赖激子在CdSe子结构nanoplatelets及其关系光致发光动力学

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摘要

CdSe nanoplatelets can be synthesized with different lateral sizes; very small nanoplatelets have almost quantum dot like features (almost discrete exciton states), while very large ones are expected to have properties of colloidal quantum wells (exciton continuum). However, nanoplatelets can be in an intermediate confinement regime with a rich substructure of excitons, which is neither quantum dot like nor an ideal 2D exciton. In this manuscript, we discuss the experimental transition energies and relaxation dynamics of exciton states in CdSe platelets with varying lateral dimensions and compare them with a microscopic theoretical model including exciton-phonon scattering. The model takes special care of the interplay of confinement and Coulomb coupling in the intermediate regime showing strong changes with respect to simple weak or strong confinement models by solving the full four dimensional lateral factorization free exciton wavefunction. Depending on the platelet size broad resonances previously attributed to just ground and excited states are actually composed of a rich substructure of several exciton states in their temporal dynamics. We show that these factorization free exciton states can explain the spectral features observed in photoluminescence experiments. Furthermore we demonstrate that the interplay of exciton bright and dark states provides principle insights into the overall temporal relaxation dynamics, and allows tuning of the exciton cooling via lateral platelet size. Our results and theoretical approach are directly relevant for understanding e.g. the size tuneability of lasing, excitonic cooling dynamics or light harvesting applications in these and similar 2D systems of finite lateral size.
机译:CdSe nanoplatelets可以合成不同的横向尺寸;几乎等量子点特性(近吗离散激子态),非常大的预计将有胶体的性质吗量子井(激子连续)。可以在一个中间nanoplatelets与丰富的子结构监禁制度激子,这既不是量子点也不一样一个理想的2 d激子。讨论实验能量和过渡放松在CdSe激子动力学状态血小板不同横向维度和微观理论模型进行比较包括exciton-phonon散射。需要特殊照顾的相互作用监禁和库仑耦合中间政权显示强烈的变化对简单的弱或强约束通过求解完整的四维模型横向分解自由激子波函数。根据血小板规模广泛的共鸣以前仅仅归因于地面和兴奋实际上是由一个富有子结构的激子的几个州时序动态。分解自由激子可以解释在光致发光光谱特性实验。相互作用的激子亮和暗的状态提供了总体原则的见解时间弛豫动力学,并允许调优激子的冷却通过横向血小板的大小。我们的研究结果和理论方法直接理解如大小有关tuneability激光,激子的冷却动力学在这些和或光收集应用程序类似的2 d系统有限的横向尺寸。

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