Zhang Hao-Tian, He Rong, Peng Lei, Yang Yu-Ting, Sun Xiao-Jie, Zhang Yu-Shan, Zheng Yu-Xiang, Liu Bao-Jian, Zhang Rong-Jun, Wang Song-You, Li Jing, Lee Young-Pak, Chen Liang-Yao
Department of Optical Science and Engineering, School of Information Science and Technology, Fudan University, Shanghai 200433, China.
High Tech Center for New Materials, Novel Devices and Cutting-Edge Manufacturing, Yiwu Research Institute, Fudan University, Yiwu 322000, China.
Nanomaterials (Basel). 2023 Jan 18;13(3):383. doi: 10.3390/nano13030383.
It is of great technological importance in the field of plasmonic color generation to establish and understand the relationship between optical responses and the reflectance of metallic nanoparticles. Previously, a series of indium nanoparticle ensembles were fabricated using electron beam evaporation and inspected using spectroscopic ellipsometry (SE). The multi-oscillator Lorentz-Drude model demonstrated the optical responses of indium nanoparticles with different sizes and size distributions. The reflectance spectra and colorimetry characteristics of indium nanoparticles with unimodal and bimodal size distributions were interpreted based on the SE analysis. The trends of reflectance spectra were explained by the transfer matrix method. The effects of optical constants and of indium on the reflectance were demonstrated by mapping the reflectance contour lines on the - plane. Using oscillator decomposition, the influence of different electron behaviors in various indium structures on the reflectance spectra was revealed intuitively. The contribution of each oscillator on the colorimetry characteristics, including hue, lightness and saturation, were determined and discussed from the reflectance spectral analysis.
在等离子体颜色产生领域,建立并理解光学响应与金属纳米颗粒反射率之间的关系具有重大的技术意义。此前,使用电子束蒸发制备了一系列铟纳米颗粒集合体,并使用光谱椭偏仪(SE)进行了检测。多振子洛伦兹 - 德鲁德模型展示了不同尺寸和尺寸分布的铟纳米颗粒的光学响应。基于SE分析解释了具有单峰和双峰尺寸分布的铟纳米颗粒的反射光谱和比色特性。通过转移矩阵法解释了反射光谱的趋势。通过在 - 平面上绘制反射等高线,展示了铟的光学常数对反射率的影响。使用振子分解,直观地揭示了各种铟结构中不同电子行为对反射光谱的影响。从反射光谱分析中确定并讨论了每个振子对比色特性(包括色调、明度和饱和度)的贡献。