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中国物理学会期刊

二维极化激元学近场研究进展

Recent progress of near-field studies of two-dimensional polaritonics

CSTR: 32037.14.aps.68.20190341
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  • 极化激元学可以实现纳米尺度上的光子操控和光与物质相互作用的调控, 已经成为现代物理学中的一个重要分支. 与传统贵金属相比, 二维范德瓦耳斯原子晶体中极化激元具有更强的局域能力且可实现主观调控. 近期, 利用扫描式近场光学显微镜在二维体系中观察到了多种类型的极化激元, 为今后量子物理和纳米光子学的发展提供了新思路. 本文主要介绍通过近场光学手段揭示二维极化激元学的重要进展和实验结果. 在介绍近场光学及其成像原理的基础上, 总结了二维极化激元学中近场研究进展的几个重要研究方向, 包括等离极化激元、声子极化激元、激子极化激元和杂化型极化激元等. 最后提出了近场光学今后可能的发展方向.

     

    Due to the capability of nanoscale manipulation of photons and tunability of light-matter interaction, polaritonics has attracted much attention in the modern physics. Compared with traditional noble metals, two-dimensional van der Waals materials provide an ideal platform for polaritons with high confinement and tunability. Recently, the development of scanning near-field optical microscopy has revealed various polaritons, thereby paving the way for further studying the quantum physics and nano-photonics. In this review paper, we summarize the new developments in two-dimensional polaritonics by near-field optical approach. According to the introduction of near-field optics and its basic principle, we show several important directions in near-field developments of two-dimensional polaritonics, including plasmon polaritons, phonon polaritons, exciton polaritons, hybridized polaritons, etc. In the final part, we give the perspectives in development of near-field optics.

     

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