材料科学
可见光谱
光学
光电子学
纳米光子学
电介质
米氏散射
光子学
掩蔽
折射率
全息术
超材料
光散射
物理
散射
作者
Li Lu,Zhaogang Dong,Febiana Tijiptoharsono,Ray Jia Hong Ng,Hongtao Wang,Soroosh Daqiqeh Rezaei,Yunzheng Wang,Hai Sheng Leong,Poh Chong Lim,Joel K. W. Yang,Robert E. Simpson
出处
期刊:ACS Nano
[American Chemical Society]
日期:2021-12-09
卷期号:15 (12): 19722-19732
被引量:60
标识
DOI:10.1021/acsnano.1c07114
摘要
Dielectric optical nanoantennas are promising as fundamental building blocks in next generation color displays, metasurface holograms, and wavefront shaping optical devices. Due to the high refractive index of the nanoantenna material, they support geometry-dependent Mie resonances in the visible spectrum. Although phase change materials, such as the germanium-antimony-tellurium alloys, and post-transition metal oxides, such as ITO, have been used to tune antennas in the near-infrared spectrum, reversibly tuning the response of dielectric antennas in the visible spectrum remains challenging. In this paper, we designed and experimentally demonstrated dielectric nanodisc arrays exhibiting reversible tunability of Mie resonances in the visible spectrum. We achieved tunability by exploiting phase transitions in Sb2S3 nanodiscs. Mie resonances within the nanodisc give rise to structural colors in the reflection mode. Crystallization and laser-induced amorphization of these Sb2S3 resonators allow the colors to be switched back and forth. These tunable Sb2S3 nanoantenna arrays could enable the next generation of high-resolution color displays, holographic displays, and miniature LiDAR systems.
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