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揭示应变对单层MoSe中气泡光学性质的影响。

Revealing the impact of strain in the optical properties of bubbles in monolayer MoSe.

作者信息

Covre F S, Faria P E, Gordo V O, de Brito C Serati, Zhumagulov Y V, Teodoro M D, Couto O D D, Misoguti L, Pratavieira S, Andrade M B, Christianen P C M, Fabian J, Withers F, Galvão Gobato Y

机构信息

Departamento de Física, Universidade Federal de São Carlos, 13565-905, São Carlos, SP, Brazil.

Institute for Theoretical Physics, University of Regensburg, 93040 Regensburg, Germany.

出版信息

Nanoscale. 2022 Apr 14;14(15):5758-5768. doi: 10.1039/d2nr00315e.

Abstract

Strain plays an important role for the optical properties of monolayer transition metal dichalcogenides (TMDCs). Here, we investigate strain effects in a monolayer MoSe sample with a large bubble region using μ-Raman, second harmonic generation (SHG), μ-photoluminescence and magneto μ-photoluminescence at low temperature. Remarkably, our results reveal the presence of a non-uniform strain field and the observation of emission peaks at lower energies which are the signatures of exciton and trion quasiparticles red-shifted by strain effects in the bubble region, in agreement with our theoretical predictions. Furthermore, we have observed that the emission in the strained region decreases the trion binding energy and enhances the valley -factors as compared to non-strained regions. Considering uniform biaxial strain effects within the unit cell of the TMDC monolayer (ML), our first principles calculations predict the observed enhancement of the exciton valley Zeeman effect. In addition, our results suggest that the exciton-trion fine structure plays an important role for the optical properties of strained TMDC ML. In summary, our study provides fundamental insights on the behaviour of excitons and trions in strained monolayer MoSe which are particularly relevant to properly characterize and understand the fine structure of excitonic complexes in strained TMDC systems/devices.

摘要

应变对单层过渡金属二硫属化物(TMDCs)的光学性质起着重要作用。在此,我们利用低温下的μ拉曼光谱、二次谐波产生(SHG)、μ光致发光和磁μ光致发光,研究了具有大气泡区域的单层MoSe样品中的应变效应。值得注意的是,我们的结果揭示了存在非均匀应变场,并观察到在较低能量处的发射峰,这些是激子和三重子准粒子因气泡区域中的应变效应而红移的特征,这与我们的理论预测一致。此外,我们观察到与非应变区域相比,应变区域中的发射降低了三重子结合能并增强了谷因子。考虑到TMDC单层(ML)晶胞内的均匀双轴应变效应,我们的第一性原理计算预测了所观察到的激子谷塞曼效应的增强。此外,我们的结果表明,激子 - 三重子精细结构对应变TMDC ML的光学性质起着重要作用。总之,我们的研究为应变单层MoSe中激子和三重子的行为提供了基本见解,这对于正确表征和理解应变TMDC系统/器件中激子复合物的精细结构尤为重要。

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