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Author(s) |
Huisman, S. R.; Nair, R. V.; Hartsuiker, A.; Woldering, L. A.; Mosk, A. P.; Vos, W. L. (A&MPD) |
Source |
Physical Review Letters, 2012. Vol. 108: pp. 083901.1-083901.5 |
ABSTRACT
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We investigate the diffraction conditions and associated formation of stop gaps for waves in crystals with different Bravais lattices. We identify a prominent stop gap in high-symmetry directions that occurs at a frequency below the ubiquitous first-order Bragg condition. This sub-Bragg-diffraction condition is demonstrated by reflectance spectroscopy on two-dimensional photonic crystals with a centered rectangular lattice, revealing prominent diffraction peaks for both the sub-Bragg and first-order Bragg conditions. These results have implications for wave propagation in 2 of the 5 two-dimensional Bravais lattices and 7 out of 14 three-dimensional Bravais lattices, such as centered rectangular, triangular, hexagonal, and body-centered cubic. |
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