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首页> 外文期刊>Applied Physics Letters >Direction-dependent spontaneous emission from near-infrared quantum dots at the angular band edges of a three-dimensional photonic crystal
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Direction-dependent spontaneous emission from near-infrared quantum dots at the angular band edges of a three-dimensional photonic crystal

机译:三维光子晶体角带边缘处近红外量子点的方向相关自发发射

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摘要

Engineering spontaneous emission from light emitters embedded within three-dimensional photonic crystals is of great significance in both fundamental research of quantum optics and applications of microphotonic devices. In this letter, we report on the effective modification of spontaneous emission from near-infrared PbSe quantum dots infiltrated in a three-dimensional woodpile polymeric photonic crystal through adjusting its angle-dependent stop gaps. A significant inhibition effect as well as a pronounced enhancement of the spontaneous emission are observed in the midgap and at the center of the band edge, respectively. The observed phenomenon can be understood from the stretched exponential model on decay dynamics.
机译:嵌入三维光子晶体中的发光体的工程自发发射在量子光学的基础研究和微光子器件的应用中都具有重要意义。在这封信中,我们报告了通过调整角度依赖性光阑间隙,有效地渗透了渗透到三维木桩聚合物光子晶体中的近红外PbSe量子点的自发发射。分别在带隙的中隙和中心观察到明显的抑制作用以及自发发射的明显增强。可以从关于衰减动力学的扩展指数模型中了解观察到的现象。

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