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Dynamics of charge-transfer excitons in a transition metal dichalcogenide heterostructure

机译:电荷转移激子的动力学过渡金属dichalcogenide异质结构

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摘要

Charge-transfer excitons are formed by photoexcited electrons and holes following charge transfer across a heterojunction. They are important quasiparticles for optoelectronic applications of semiconducting heterostructures. The newly developed two-dimensional heterostructures provide a new platform to study these excitons. We report spatially and temporally resolved transient absorption measurements on the dynamics of charge-transfer excitons in a MoS2/WS2/MoSe2 trilayer heterostructure. We observed a non-classical lateral diffusion process of charge-transfer excitons with a decreasing diffusion coefficient. This feature suggests that hot charge-transfer excitons with large kinetic energies are formed and their cooling process persists for about 100 ps. The long energy relaxation time of excitons in the trilayer compared to its monolayer components is attributed to the reduced carrier and phonon scattering due to the dielectric screening effect in the trilayer. Our results help develop an in-depth understanding of the dynamics of charge-transfer excitons in two-dimensional heterostructures.
机译:电荷转移形成激子后光激的电子和空穴在异质结转移。重要的内部光电半导体异质结构的应用程序。新开发的二维异质结构研究提供了新的平台这些激子。暂时解决瞬态吸收在电荷转移的动态测量激子在二硫化钼/二硫化钨/ MoSe2 trilayer异质结构。横向扩散的电荷转移过程激子扩散系数降低。这个特性表明,热的电荷转移激子形成巨大的动能和他们的冷却过程持续约100ps,激子的能量弛豫时间长在trilayer相比单层组件是由于减少载体由于电介质和声子散射trilayer屏蔽效应。帮助开发的深入理解电荷转移激子动力学二维异质结构。

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