Darlington Thomas P, Carmesin Christian, Florian Matthias, Yanev Emanuil, Ajayi Obafunso, Ardelean Jenny, Rhodes Daniel A, Ghiotto Augusto, Krayev Andrey, Watanabe Kenji, Taniguchi Takashi, Kysar Jeffrey W, Pasupathy Abhay N, Hone James C, Jahnke Frank, Borys Nicholas J, Schuck P James
Department of Physics, UC Berkeley, Berkeley, CA, USA.
Institute for Theoretical Physics, University of Bremen, Bremen, Germany.
Nat Nanotechnol. 2020 Oct;15(10):854-860. doi: 10.1038/s41565-020-0730-5. Epub 2020 Jul 13.
In monolayer transition-metal dichalcogenides, localized strain can be used to design nanoarrays of single photon sources. Despite strong empirical correlation, the nanoscale interplay between excitons and local crystalline structure that gives rise to these quantum emitters is poorly understood. Here, we combine room-temperature nano-optical imaging and spectroscopic analysis of excitons in nanobubbles of monolayer WSe with atomistic models to study how strain induces nanoscale confinement potentials and localized exciton states. The imaging of nanobubbles in monolayers with low defect concentrations reveals localized excitons on length scales of around 10 nm at multiple sites around the periphery of individual nanobubbles, in stark contrast to predictions of continuum models of strain. These results agree with theoretical confinement potentials atomistically derived from the measured topographies of nanobubbles. Our results provide experimental and theoretical insights into strain-induced exciton localization on length scales commensurate with exciton size, realizing key nanoscale structure-property information on quantum emitters in monolayer WSe.
在单层过渡金属二硫属化物中,局部应变可用于设计单光子源的纳米阵列。尽管存在很强的经验相关性,但导致这些量子发射器的激子与局部晶体结构之间的纳米级相互作用仍知之甚少。在这里,我们将室温下的纳米光学成像和单层WSe纳米气泡中激子的光谱分析与原子模型相结合,以研究应变如何诱导纳米级限制势和局域激子态。对低缺陷浓度单层中的纳米气泡进行成像,发现在单个纳米气泡周边的多个位置,在约10纳米的长度尺度上存在局域激子,这与应变连续体模型的预测形成鲜明对比。这些结果与从纳米气泡测量形貌原子推导的理论限制势一致。我们的结果为与激子尺寸相当的长度尺度上应变诱导的激子局域化提供了实验和理论见解,实现了关于单层WSe中量子发射器的关键纳米级结构-性质信息。