论文标题

超快载体动力学在二维电子气体样k掺杂MOS2中

Ultrafast Carrier Dynamics in Two-Dimensional Electron Gas-Like K-doped MoS2

论文作者

Eads, Calley N., Zachritz, Sara L., Park, Joohyung, Chakraborty, Anubhab, Nordlund, Dennis L., Monti, Oliver L. A.

论文摘要

与原子吸附物相关的电子相互作用在过渡金属二分法中(例如MOS2)可以诱导大规模的电子重建,从而导致形成一种新型的重掺杂的过渡金属二甲盐,从而表现出具有二维电子气体的特征。量子限制和降低维度对此类二维系统中载体动力学的影响目前尚不清楚,但如果要在光电设备中找到应用,它们至关重要。在这里,我们通过角度分辨光发射和先进的X射线光谱镜结合了降低尺寸的多体相互作用的结合,使载流子的寿命急剧缩短到低于0.5 fs,并揭示MOS2中钾的插入量如何强制轨道插入效应轨道的插入,如何产生二维电子气体。

Electronic interactions associated with atomic adsorbates on transition metal dichalcogenides such as MoS2 can induce massive electronic reconstruction that results in the formation of a new type of heavily doped transition metal dichalcogenide that exhibits characteristics of a two-dimensional electron gas. The impact of quantum confinement and reduced dimensionality on the carrier dynamics in such two-dimensional systems is at present not known, but is of paramount importance if they are to find application in optoelectronic devices. Here we show by a combination of angle-resolved photoemission and advanced x-ray spectroscopies that many-body interactions in reduced dimension drastically shorten carrier lifetimes to below 0.5 fs, and reveal how potassium intercalation in MoS2 forces orbital rehybridization to create a two-dimensional electron gas.

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