Angle-dependent spectrum measurement of polystyrene opal-like structure described by Bragg-Snell diffraction and perturbed photonic band structure

Optical diffraction of opal structure, a colloidal photonic crystal, can be predicted by Bragg-Snell diffraction and photonic band structure. Theoretical prediction and optical measurement are frequently slightly different due to distance variation of particle packing. In this research, opal of 310...

全面介紹

Saved in:
書目詳細資料
Main Authors: N. Sitpathom, T. Muangnapoh, P. Kumnorkaew, S. Suwanna, A. Sinsarp, T. Osotchan
其他作者: Thailand National Nanotechnology Center
格式: Conference or Workshop Item
出版: 2022
主題:
在線閱讀:https://repository.li.mahidol.ac.th/handle/123456789/75278
標簽: 添加標簽
沒有標簽, 成為第一個標記此記錄!
機構: Mahidol University
實物特徵
總結:Optical diffraction of opal structure, a colloidal photonic crystal, can be predicted by Bragg-Snell diffraction and photonic band structure. Theoretical prediction and optical measurement are frequently slightly different due to distance variation of particle packing. In this research, opal of 310 nm polystyrene beads was fabricated by self-assembly process and optically investigated in transmission spectra at varied angles. The measured spectra had less agreement to the Bragg-Snell prediction at large angle of detection. To explore influence of packing distance on optical response, photonic band structures were numerically simulated via plane-wave expansion method at presence of perturbed length in primitive lattice vectors. Extending each primitive vector with fixing others provided a different eigen-frequency of the first photonic band, although they had a symmetrical perturbation on (111) face-centered cubic. Perturbation on lattice length became much strong when the disturbing direction was out of eigenstate orientation plane.