Optical Broadband Angular Selectivity
Широкополосная угловая селективность в оптике
2014-03-27
SCID: 54.1/gmw48t4v
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Brewster modesbroadband angular selectivitygeneralized Brewster angleone-dimensional photonic crystalsp-polarized light
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Abstract (AI)
Light selection based purely on the angle of propagation is a long-standing scientific challenge. In angularly selective systems, however, the transmission of light usually also depends on the light frequency. We tailored the overlap of the band gaps of multiple one-dimensional photonic crystals, each with a different periodicity, in such a way as to preserve the characteristic Brewster modes across a broadband spectrum. We provide theory as well as an experimental realization with an all-visible spectrum, p-polarized angularly selective material system. Our method enables transparency throughout the visible spectrum at one angle--the generalized Brewster angle--and reflection at every other viewing angle.
Key Findings
1
Preserving characteristic Brewster modes enables angle-dependent transmission across an all-visible broadband spectrum for p-polarized light.
2
The experimentally realized material system is transparent throughout the visible spectrum at one generalized Brewster angle.
3
The study develops broadband angular selectivity by tailoring overlapping band gaps of multiple one-dimensional photonic crystals with different periodicities.
4
The system reflects visible light at every other viewing angle, demonstrating frequency-independent angular filtering in the visible range.
Research Object
p-polarized angularly selective material system based on multiple one-dimensional photonic crystals with different periodicities
Research Subject
broadband angular-selective transmission and reflection across the visible spectrum, including transparency at the generalized Brewster angle
Publication Details
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2014-03-27
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