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二维WS/WSe异质结构中层内和层间激子的辐射模式。

Radiative pattern of intralayer and interlayer excitons in two-dimensional WS/WSe heterostructure.

作者信息

Aly Mohammed Adel, Shah Manan, Schneider Lorenz Maximilian, Kang Kyungnam, Koch Martin, Yang Eui-Hyeok, Rahimi-Iman Arash

机构信息

Faculty of Physics and Materials Sciences Center, Philipps-Universität Marburg, 35032, Marburg, Germany.

Physics Department, Faculty of Science, Ain Shams University, Cairo, 11566, Egypt.

出版信息

Sci Rep. 2022 Apr 28;12(1):6939. doi: 10.1038/s41598-022-10851-3.

Abstract

Two-dimensional (2D) heterostructures (HS) formed by transition-metal dichalcogenide (TMDC) monolayers offer a unique platform for the study of intralayer and interlayer excitons as well as moiré-pattern-induced features. Particularly, the dipolar charge-transfer exciton comprising an electron and a hole, which are confined to separate layers of 2D semiconductors and Coulomb-bound across the heterojunction interface, has drawn considerable attention in the research community. On the one hand, it bears significance for optoelectronic devices, e.g. in terms of charge carrier extraction from photovoltaic devices. On the other hand, its spatially indirect nature and correspondingly high longevity among excitons as well as its out-of-plane dipole orientation render it attractive for excitonic Bose-Einstein condensation studies, which address collective coherence effects, and for photonic integration schemes with TMDCs. Here, we demonstrate the interlayer excitons' out-of-plane dipole orientation through angle-resolved spectroscopy of the HS photoluminescence at cryogenic temperatures, employing a tungsten-based TMDC HS. Within the measurable light cone, the directly-obtained radiation profile of this species clearly resembles that of an in-plane emitter which deviates from that of the intralayer bright excitons as well as the other excitonic HS features recently attributed to artificial superlattices formed by moiré patterns.

摘要

由过渡金属二硫属化物(TMDC)单层形成的二维(2D)异质结构(HS)为研究层内和层间激子以及莫尔图案诱导的特征提供了一个独特的平台。特别地,由一个电子和一个空穴组成的偶极电荷转移激子,它们被限制在二维半导体的不同层中,并通过异质结界面库仑束缚,在研究界引起了相当大的关注。一方面,它对光电器件具有重要意义,例如在从光伏器件中提取电荷载流子方面。另一方面,其空间间接性质以及激子中相应的高寿命,以及其面外偶极取向,使其对研究集体相干效应的激子玻色 - 爱因斯坦凝聚研究以及与TMDCs的光子集成方案具有吸引力。在这里,我们使用基于钨的TMDC HS,通过低温下HS光致发光的角分辨光谱来证明层间激子的面外偶极取向。在可测量的光锥内,该物种直接获得的辐射分布明显类似于面内发射器的辐射分布,这与层内明亮激子以及最近归因于莫尔图案形成的人工超晶格的其他激子HS特征的辐射分布不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08c4/9050751/04aacd8668df/41598_2022_10851_Fig1_HTML.jpg

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