Engineering a light-emitting planar defect within three-dimensional photonic crystals

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Abstract

Sandwich structures, constructed from a planar defect of rhodamine-B (RhB)-doped titania (TiO2) and two photonic crystals, were synthesized via the self-assembly method combined with spin-coating. The modification of the spontaneous emission of RhB molecules in such structures was investigated experimentally. The spontaneous emission of RhB-doped TiO 2 film with photonic crystals was reduced by a factor of 5.5 over a large bandwidth of 13% of the first-order Bragg diffraction frequency when compared with that of RhB-doped TiO2 film without photonic crystals. The angular dependence of the modification and the photoluminescence lifetime of RhB molecules demonstrate that the strong and wide suppression of the spontaneous emission of the RhB molecules is due to the presence of the photonic band gap. © 2009 National Institute for Materials Science.

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Liu, G., Chen, Y., & Ye, Z. (2009). Engineering a light-emitting planar defect within three-dimensional photonic crystals. Science and Technology of Advanced Materials, 10(5). https://doi.org/10.1088/1468-6996/10/5/055001

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