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Probing Photoexcited Carriers in a Few-Layer MoS2 Laminate by Time-Resolved Optical Pump-Terahertz Probe Spectroscopy

机译:通过时间分辨光泵-太赫兹探针光谱学在几层MoS2叠层中探测光激发载流子

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摘要

We report the dynamics of photoinduced carriers in a free-standing MoS2 laminate consisting of a few layers (1-6 layers) using time-resolved optical pump-terahertz probe spectroscopy. Upon photoexcitation with the 800 nm pump pulse, the terahertz conductivity increases due to absorption by the photoinduced charge carriers. The relaxation of the non-equilibrium carriers shows fast as well as slow decay channels, analyzed using a rate equation model incorporating defect-assisted Auger scattering of photoexcited electrons, holes, and excitons. The fast relaxation time occurs due to the capture of electrons and holes by defects via Auger processes, resulting in nonradiative recombination. The slower relaxation arises since the excitons are bound to the defects, preventing the defect-assisted Auger recombination of the electrons and the holes. Our results provide a comprehensive understanding of the non-equilibrium carrier kinetics in a system of unscreened Coulomb interactions, where defect-assisted Auger processes dominate and should be applicable to other 2D systems.
机译:我们报告使用时间分辨的光泵-太赫兹探针光谱学在由几层(1-6层)组成的独立式MoS2层压板中的光诱导载体的动力学。在用800 nm泵浦脉冲进行光激发后,太赫兹电导率由于光诱导的电荷载流子的吸收而增加。非平衡载流子的弛豫显示了快速衰减通道和缓慢衰减通道,使用速率方程模型进行了分析,该模型结合了缺陷辅助的俄歇散射光激发电子,空穴和激子。由于弛豫过程通过缺陷捕获了电子和空穴而导致了快速弛豫时间,从而导致了非辐射复合。由于激子与缺陷结合,因此出现了较慢的弛豫,从而阻止了电子和空穴的缺陷辅助俄歇复合。我们的结果提供了对未经筛选的库仑相互作用系统中非平衡载流子动力学的全面理解,其中缺陷辅助的俄歇过程占主导地位,应该适用于其他2D系统。

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