Xu Yanli, Wang Yulin, Yang Yinye, Yang Shengyi, Li Linfu, Xiang Rong, Liu Jiangtao
Opt Express. 2024 Feb 12;32(4):6776-6790. doi: 10.1364/OE.515566.
Independently tunable biaxial color pixels, composed of isolated nanosquare dimers, are demonstrated in this study. These pixels are capable of displaying a full range of colors under a linear-polarization dependent reflection mode. The metasurface is constructed by arranging LiNbO nanodimers on a PDMS substrate. By exciting a strong magnetic dipole (MD) resonance and effectively suppressing other multipolar resonances using surface lattice resonances, the researchers achieved a single reflection peak with a bandwidth of less than 9 nm and a reflective efficiency of up to 99%. Additionally, the stretchability of the PDMS substrate allows for active and continuous tuning of the metasurface by up to 40% strain, covering almost 150 nm of the visible light spectrum and enabling changes in reflection color. This metasurface holds potential applications in various fields, such as color displays, data storage, and anti-counterfeiting technologies.
本研究展示了由孤立的纳米方形二聚体组成的独立可调谐双轴彩色像素。这些像素能够在依赖线性偏振的反射模式下显示全色域颜色。该超表面是通过在聚二甲基硅氧烷(PDMS)衬底上排列铌酸锂(LiNbO)纳米二聚体构建而成。通过激发强磁偶极(MD)共振,并利用表面晶格共振有效抑制其他多极共振,研究人员实现了带宽小于9纳米、反射效率高达99%的单一反射峰。此外,PDMS衬底的可拉伸性允许对超表面进行高达40%应变的主动和连续调谐,覆盖近150纳米的可见光谱范围,并实现反射颜色的变化。这种超表面在各种领域具有潜在应用,如彩色显示、数据存储和防伪技术。