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Optically Excited Secondary Emission Spectra of Photonic Crystals Based on Synthetic Opals

机译:基于合成蛋白石的光子晶体的光激发二次发射光谱

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摘要

The photonic dispersion, the group-velocity dispersion, the effective mass, refractive index, and the spectral distribution of the density of photonic states near the edge of the photonic stop band are numerically calculated in the one-dimensional model for photonic crystals based on synthetic opals. The fluorescence spectra of rhodamine 6G and 2,5-bis(2-benzoxazolyl)hydroquinone molecules infiltrated into a synthetic opal are measured. For both substances, it is observed that the spontaneous emission intensity in the range of the photonic stop band is appreciably suppressed. A blue shift of the fluorescence spectrum of rhodamine 6G molecules is revealed. Secondary emission of synthetic opals infiltrated with colloidal silver is observed in the Stokes range under excitation of opals by radiation at lambda velence 400 nm. The spectrum of the secondary emission is located in the range 450-590 nm, which contains the stop band and intervals near its edges.
机译:在基于合成的一维光子晶体模型中,通过数值计算光子色散,基团速度色散,有效质量,折射率和光子阻带边缘附近光子态密度的光谱分布蛋白石。测量了渗入合成蛋白石中的若丹明6G和2,5-双(2-苯并恶唑基)氢醌分子的荧光光谱。对于这两种物质,观察到在光子阻带范围内的自发发射强度被明显抑制。罗丹明6G分子的荧光光谱显示出蓝移。在λvelence 400 nm的辐射激发蛋白石的斯托克斯范围内,观察到在胶粘银渗透的合成蛋白石的二次发射。二次发射的光谱位于450-590 nm范围内,其中包含阻带和边缘附近的间隔。

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