Improvement of the Focusing Resolution of Photonic Crystal Negative Refraction Imaging with a Hollow Component Structure

The negative refraction and imaging effects in photonic crystals can be used to solve diffraction limit problem in near-held optics. Improving transmission efficiency and image resolution is a critical work for negative refrac-tion imaging. We theoretically investigate the band structures, equi-freq...

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Veröffentlicht in:Chinese physics letters 2013-05, Vol.30 (5), p.54206-1-054206-5, Article 054206
Hauptverfasser: Chen, Shou-Xiang, Yang, Xiu-Lun, Meng, Xiang-Feng, Dong, Guo-Yan, Wang, Yu-Rong, Wang, Lin-Hui, Huang, Zhe
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Sprache:eng
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Zusammenfassung:The negative refraction and imaging effects in photonic crystals can be used to solve diffraction limit problem in near-held optics. Improving transmission efficiency and image resolution is a critical work for negative refrac-tion imaging. We theoretically investigate the band structures, equi-frequency surfaces, electromagnetic wave propagation, and the image intensity distributions in a two-dimensional hexagonal photonic crystal consisting of hollow components. It is found that, in contrast to a hexagonal photonic crystal consisting of solid dielectric cylinders of the same radius, photonic crystals with hollow components can be used to optimize the all-angle negative refraction. Numerical simulations show that i transmission efficiency and resolution of image can be enhanced by changing the radii of the hollow air rods.
ISSN:0256-307X
1741-3540
DOI:10.1088/0256-307X/30/5/054206