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Full Spectral and Angular Characterization of Highly Directional Emission from Nanocrystal Quantum Dots Positioned on Circular Plasmonic Lenses

机译:圆形等离子透镜上的纳米晶体量子点的高方向性发射的全光谱和角度表征

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We design a circular plasmonic lens for collimation of light emission from nanocrystal quantum dots at room temperature in the near IR spectral range. We implement a two-dimensional k-space imaging technique to obtain the full spectral-angular response of the surface plasmon resonance modes of the bare plasmonic lens. This method is also used to map the full spectral-angular emission from nanocrystal quantum dots positioned at the center of the circular plasmonic lens. A narrow directional emitting beam with a divergence angle of only ~4.5° full width at half-maximum is achieved with a spectrally broad bandwidth of 30 nm. The spectrally resolved k-space imaging method allows us to get a direct comparison between the spectral-angular response of the resonant surface plasmon modes of the lens and the emission pattern of the quantum dots. This comparison gives a clear and detailed picture of the direct role of these resonant surface waves in directing the emission. The directional emission effect agrees well with calculations based on the coupled mode method. These results are a step toward fabricating an efficient room-temperature single photon source based on nanocrystal quantum dots.
机译:我们设计了一个圆形等离子透镜,用于在室温下在近红外光谱范围内准直纳米晶体量子点的光发射。我们实现了二维k空间成像技术,以获取裸等离子透镜的表面等离振子共振模式的全光谱角响应。该方法还用于映射位于圆形等离子透镜中心的纳米晶体量子点的完整光谱角发射。在30 nm的光谱宽带宽下,可以实现窄的定向发射光束,其发散角仅为最大全宽度的〜4.5°。光谱分辨k空间成像方法使我们能够直接比较透镜的共振表面等离子体激元模的光谱角响应和量子点的发射图。这种比较给出了这些谐振表面波在指导发射中的直接作用的清晰而详尽的描述。定向发射效应与基于耦合模式方法的计算非常吻合。这些结果是朝基于纳米晶体量子点制造高效的室温单光子源迈出的一步。

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