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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Manipulation of the fluorescence of nanocrystals by opal-based heterostructures
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Manipulation of the fluorescence of nanocrystals by opal-based heterostructures

机译:基于蛋白石的异质结构操纵纳米晶体的荧光

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摘要

Opal-based photonic crystals are promising materials to engineer complex heterostructures for efficient manipulation of nano-emitters fluorescence. We fabricated and characterized a structure composed of a layer of silica embedded between two silica opals. Thanks to this controlled planar defect which opens a permitted frequency band in the photonic stopband, an increase of emission, depending on angular distribution, is evidenced through photoluminescence spectroscopy. We discuss the use of such a structure as a self-assembled micrometer-sized spectroscopic device and demonstrate that it can be used to point the maximum emission wavelength of an unknown light source up to a certain linewidth. It can as well separate two sources, emitting at different wavelengths, with a resolution given by the Rayleigh criterion.
机译:基于蛋白石的光子晶体是有前途的材料,可以工程化复杂的异质结构,以有效地控制纳米发射体的荧光。我们制造并表征了一种结构,该结构由两个二氧化硅蛋白石之间嵌入的二氧化硅层组成。由于这种受控的平面缺陷会在光子阻带中打开一个允许的频带,因此通过光致发光光谱法可以证明取决于角度分布的发射增加。我们讨论了这种结构作为自组装的微米级光谱仪的使用,并证明它可用于将未知光源的最大发射波长指向某个线宽。它也可以分离两个以不同波长发射的光源,其分辨率由瑞利准则给出。

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