Search for negative refraction and focusing at optical wavelengths: Imaging of quantum dots fluorescence in opal photonic crystals

Joshua Rous, R. Moussa, A. Aliev, A. Zakhidov
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Abstract

Summary form only given. The talk overviews the efforts to achieve negative refraction (NR) in visible and IR by systems, having negative group velocity: photonic crystals (PC) and other systems with strong spatial dispersion of dielectric function, such as gyrotropic crystals and polaritonic media. To search the NR in PCs the fluorescence of CdS and CdSe quantum dots (QD) impregnated into porous silica and polysterene opal photonic crystals have been compared for QDs of different sizes. Spatial distribution of light is visualized by confocal fluorescent microscopy for QDs emitting in blue, green and red spectral bands and compared for PCs matrices having photonic band gaps in different spectral bands. It is found that spatial distribution of fluorescence emission from single QDs and small aggregates of QD is significantly different for QD with fluorescent lines below, within and above PBG frequency in [111]direction. We discuss this different spatial fluorescent patterns in terms of negative refraction in upper photonic bands, which have negative group velocity. The light from QD in the upper band creates patterns, which can be interpreted as due to focusing by the interface between media with positive and negative refraction. We analyze the fluorescence patterns of same size QD in inverted opals, and opals with strong disordering.
在光学波长上寻找负折射和聚焦:蛋白石光子晶体中量子点荧光的成像
只提供摘要形式。讲座概述了具有负群速度的系统在可见光和红外中实现负折射(NR)的努力:光子晶体(PC)和其他具有强空间色散介电功能的系统,如陀螺晶体和极化介质。为了寻找pc中的NR,比较了浸渍在多孔二氧化硅和聚乳蛋白石光子晶体中的CdS和CdSe量子点(QD)在不同尺寸量子点上的荧光特性。利用共聚焦荧光显微镜观察了在蓝色、绿色和红色光谱波段发射的量子点的光的空间分布,并比较了在不同光谱波段具有光子带隙的PCs矩阵。研究发现,在[111]方向上,荧光线在PBG频率以下、以内和以上的量子点,单个量子点和量子点小聚集体的荧光发射的空间分布有显著差异。我们讨论了这种不同的空间荧光模式在负折射的上光子带,这是负群速度。来自量子点的光在上波段产生图案,这可以解释为由于具有正折射和负折射的介质之间的界面聚焦。我们分析了倒蛋白石和强无序蛋白石中相同大小量子点的荧光模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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