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Transport Dynamics of Neutral Excitons and Trions in Monolayer WS2

机译:单层WS2中中性激子和三重子的传输动力学

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摘要

Understanding the spatial motion of excitons is of both fundamental interest and central importance for optoelectrical applications. Here, we have investigated the temperature (T) dependence of the transport dynamics of neutral excitons and charged excitons (trions) in atomically thin two-dimensional crystals of the transition-metal dichalcogenide WS2. The transport dynamics of neutral excitons can be divided into three temperature ranges, where the diffusion of neutral excitons is governed by thermal activation (<=similar to 75 K), ionized impurity scattering (similar to 75 K <= T <=similar to 200 K), and LO phonon scattering (>=similar to 200 K). The trions have a diffusion length that is over 20 times longer than that of neutral excitons at very low temperatures (<=similar to 10 K), which may be related to theoretically predicted Pauli-blocking effects during the excitation process.
机译:理解激子的空间运动对于光电应用既具有根本的兴趣,又具有至关重要的意义。在这里,我们研究了过渡金属二卤化物WS2原子薄的二维晶体中中性激子和带电激子(三重子)的传输动力学的温度(T)依赖性。中性激子的传输动力学可分为三个温度范围,其中中性激子的扩散受热活化(<=类似于75 K),电离杂质散射(类似于75 K <= T <=类似于200)控制。 K和LO声子散射(> =类似于200 K)。在非常低的温度(<=类似于10 K)下,三重子的扩散长度比中性激子的扩散长度长20倍以上,这可能与激发过程中理论上预测的保利效应有关。

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