Electrically switchable anisotropic polariton propagation in a ferroelectric van der Waals semiconductor

被引:0
作者
Yue Luo
Nannan Mao
Dapeng Ding
Ming-Hui Chiu
Xiang Ji
Kenji Watanabe
Takashi Taniguchi
Vincent Tung
Hongkun Park
Philip Kim
Jing Kong
William L. Wilson
机构
[1] Harvard University,Center for Nanoscale Systems
[2] Harvard University,Department of Physics
[3] Massachusetts Institute of Technology,Department of Electrical Engineering and Computer Science
[4] Harvard University,Department of Chemistry and Chemical Biology
[5] King Abdullah University of Science and Technology,Department of Material Science and Engineering
[6] National Institute for Materials Science,International Center for Materials Nanoarchitectonics
[7] National Institute for Materials Science,Research Center for Functional Materials Science
[8] The University of Tokyo,Department of Chemical System Engineering, School of Engineering
来源
Nature Nanotechnology | 2023年 / 18卷
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摘要
Tailoring of the propagation dynamics of exciton-polaritons in two-dimensional quantum materials has shown extraordinary promise to enable nanoscale control of electromagnetic fields. Varying permittivities along crystal directions within layers of material systems, can lead to an in-plane anisotropic dispersion of polaritons. Exploiting this physics as a control strategy for manipulating the directional propagation of the polaritons is desired and remains elusive. Here we explore the in-plane anisotropic exciton-polariton propagation in SnSe, a group-IV monochalcogenide semiconductor that forms ferroelectric domains and shows room-temperature excitonic behaviour. Exciton-polaritons are launched in SnSe multilayer plates, and their propagation dynamics and dispersion are studied. This propagation of exciton-polaritons allows for nanoscale imaging of the in-plane ferroelectric domains. Finally, we demonstrate the electric switching of the exciton-polaritons in the ferroelectric domains of this complex van der Waals system. The study suggests that systems such as group-IV monochalcogenides could serve as excellent ferroic platforms for actively reconfigurable polaritonic optical devices.
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页码:350 / 356
页数:6
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