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在环境条件下,以确定性方式实现间隙等离激元和二维激子之间的强光-物质相互作用。

Strong Light-Matter Interactions between Gap Plasmons and Two-Dimensional Excitons under Ambient Conditions in a Deterministic Way.

作者信息

Yang Longlong, Xie Xin, Yang Jingnan, Xue Mengfei, Wu Shiyao, Xiao Shan, Song Feilong, Dang Jianchen, Sun Sibai, Zuo Zhanchun, Chen Jianing, Huang Yuan, Zhou Xingjiang, Jin Kuijuan, Wang Can, Xu Xiulai

机构信息

Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.

CAS Center for Excellence in Topological Quantum Computation and School of Physical Sciences, University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.

出版信息

Nano Lett. 2022 Mar 23;22(6):2177-2186. doi: 10.1021/acs.nanolett.1c03282. Epub 2022 Mar 3.

Abstract

Strong exciton-plasmon interactions between layered two-dimensional (2D) semiconductors and gap plasmons show a great potential to implement cavity quantum electrodynamics under ambient conditions. However, achieving a robust plasmon-exciton coupling with nanocavities is still very challenging, because the layer area is usually small in the conventional approaches. Here, we report on a robust strong exciton-plasmon coupling between the gap mode of a bowtie and the excitons in MoS layers with gold-assisted mechanical exfoliation and nondestructive wet transfer techniques for a large-area layer. Due to the ultrasmall mode volume and strong in-plane field, the estimated effective exciton number contributing to the coupling is largely reduced. With a corrected exciton transition dipole moment, the exciton numbers are extracted as being 40 for the case of a single layer and 48 for eight layers. Our work paves the way to realize strong coupling with 2D materials with a small number of excitons at room temperature.

摘要

层状二维(2D)半导体与能隙等离子体激元之间的强激子 - 等离子体激元相互作用在环境条件下实现腔量子电动力学方面显示出巨大潜力。然而,实现与纳米腔的稳健等离子体激元 - 激子耦合仍然极具挑战性,因为在传统方法中,层面积通常较小。在此,我们报道了通过金辅助机械剥离和大面积层的无损湿法转移技术,在蝴蝶结型能隙模式与MoS层中的激子之间实现了稳健的强激子 - 等离子体激元耦合。由于超小的模式体积和面内强场,对耦合有贡献的有效激子数估计大幅减少。通过校正的激子跃迁偶极矩,单层情况下激子数提取为40,八层情况下为48。我们的工作为在室温下用少量激子与二维材料实现强耦合铺平了道路。

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