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首页> 外文期刊>Journal of Nanophotonics >Designing photonic band gaps in SiO_(2)-based face-centered cubic-structured crystals
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Designing photonic band gaps in SiO_(2)-based face-centered cubic-structured crystals

机译:设计基于SiO_(2)的面心立方结构晶体中的光子带隙

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We designed face-centered cubic-structured (fcc) photonic crystals whose lattice parameters were tuned by varying the size of the constituent spherical silica particles in the range 100 to 520 nm. From wide-angle optical transmission investigations and Gaussian fitting of the absorbance spectra over UV-Vis-Near IR range, we found that in these crystals the Bragg wavelengths of the photonic band gaps (PBGs) corresponding to the reflected crystal planes linearly increase with the size of the spheres as expected. From this data, the average refractive index along the different crystal planes of the fcc structure was found to be in the 1.24 to 1.32 range. The Bragg wavelengths were tuned between 400 and 1100 nm. Thus, photonic crystals of the same structure can be designed to tune the Bragg wavelengths of PBGs by selecting the sphere size. These studies open up possibilities to design a new class of "smart" photonic crystals consisting of dielectric entities of sub-micron silica spheres with added functionality from magnetic or piezoelectric nanoparticles embedded in them.
机译:我们设计了以面心为中心的立方结构(fcc)光子晶体,其晶格参数通过在100至520 nm范围内改变球形二氧化硅颗粒的尺寸来调整。从广角光透射研究和UV-Vis-Near IR范围内的吸收光谱的高斯拟合,我们发现,在这些晶体中,与反射晶体平面相对应的光子带隙(PBG)的Bragg波长随波长线性增加。球的大小符合预期。根据该数据,发现沿着fcc结构的不同晶面的平均折射率在1.24至1.32范围内。布拉格波长在400至1100 nm之间调整。因此,可以设计相同结构的光子晶体,通过选择球体尺寸来调谐PBG的布拉格波长。这些研究为设计新型“智能”光子晶体提供了可能性,该晶体由亚微米二氧化硅球的介电实体组成,并具有嵌入其中的磁性或压电纳米粒子的附加功能。

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