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蛋白石和反蛋白石光子晶体中激光染料的定向荧光光谱。

Directional fluorescence spectra of laser dye in opal and inverse opal photonic crystals.

作者信息

Bechger Lydia, Lodahl Peter, Vos Willem L

机构信息

Complex Photonic Systems (COPS), MESA Research Institute and Department of Science and Technology, University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.

出版信息

J Phys Chem B. 2005 May 26;109(20):9980-8. doi: 10.1021/jp047489t.

Abstract

We have investigated the fluorescence from R6G dye molecules embedded in fcc photonic crystals with a large range of lattice parameters. Both polystyrene opals and alumina inverse opals are studied, allowing us to compare direct and inverted structures. We observe clear stop bands in the fluorescence spectra, whose center positions, widths, and depths are analyzed and compared to stop bands from reflectivity measurements. In the frequency range of first-order stop gaps, the measured stop band centers and widths agree well with theoretical predictions. The depths are interpreted in terms of the mean free path (disorder) and the Bragg attenuation length (order). We observe intriguing enhanced emission at the blue side of the stop bands, which is attributed to the escape of diffuse light from the photonic crystal (related to both order and disorder). We perform the first experiments in the range of second-order stop gaps, which is the regime where the photonic band gap is anticipated. We observe complex multiple-Bragg features that correlate favorably with reflectivity peaks.

摘要

我们研究了嵌入具有大范围晶格参数的面心立方光子晶体中的若丹明6G染料分子的荧光。对聚苯乙烯蛋白石和氧化铝反蛋白石都进行了研究,这使我们能够比较直接结构和倒置结构。我们在荧光光谱中观察到清晰的禁带,对其中心位置、宽度和深度进行了分析,并与反射率测量得到的禁带进行了比较。在一阶禁带频率范围内,测得的禁带中心和宽度与理论预测吻合良好。禁带深度根据平均自由程(无序)和布拉格衰减长度(有序)来解释。我们在禁带的蓝端观察到有趣的增强发射,这归因于漫射光从光子晶体中的逸出(与有序和无序都有关)。我们在二阶禁带范围内进行了首次实验,该范围是预期出现光子带隙的区域。我们观察到与反射率峰值良好相关的复杂多布拉格特征。

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