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Method Of Efficient Coupling Of Light From Single-Photon Emitter To Guided Radiation Localized To Sub-Wavelength Dimensions On Conducting Nanowires

机译:将光从单光子发射器到导纳辐射的有效耦合方法,将其传导到导电纳米线上的亚波长尺寸

摘要

A cavity free, broadband approach for engineering photon emitter interactions via sub-wavelength confinement of optical fields near metallic nanostructures. When a single CdSe quantum dot (QD) is optically excited in close proximity to a silver nanowire (NW), emission from the QD couples directly to guided surface plasmons in the NW, causing the wire's ends to light up. Nonclassical photon correlations between the emission from the QD and the ends of the NW demonstrate that the latter stems from the generation of single, quantized plasmons. Results from a large number of devices show that the efficient coupling is accompanied by more than 2.5-fold enhancement of the QD spontaneous emission, in a good agreement with theoretical predictions.
机译:通过在金属纳米结构附近通过亚波长限制光场来实现光子发射体相互作用的无腔宽带方法。当单个CdSe量子点(QD)在靠近银纳米线(NW)的位置被光学激发时,来自QD的发射直接耦合到NW中的引导表面等离激元,从而导致线的末端变亮。 QD的发射与NW的末端之间的非经典光子相关性表明,后者来自单个量化等离激元的产生。大量设备的结果表明,有效耦合伴随着QD自发发射的2.5倍以上增强,与理论预测相吻合。

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