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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Analysis of a Bowtie Nanoantenna for the Enhancement of Spontaneous Emission
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Analysis of a Bowtie Nanoantenna for the Enhancement of Spontaneous Emission

机译:Bowtie纳米天线增强自发发射的分析

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A 2-D metallic bowtie nanoantenna, consisting of two nearby metallic nanotriangles and containing a molecule within the gap, is studied for the enhancement of a single emitter's spontaneous emission. For simplicity, a transverse-magnetic model is used for simulation and a set of new surface integral equations is developed for the calculation. The process of spontaneous emission is simply divided into two stages: the first stage is the excitation of the emitter irradiated by an incident plane wave and the second is the emission of the excited emitter. For the latter, the excited emitter is modeled as an electric dipole to interact with the nanoantenna. The results show that a metallic bowtie nanoantenna behaves as a nanolens as well as a polarizer to provide a strong local electric field with a polarization parallel to the axis of the bowtie in the gap for the emitter's excitation, and its quantum yield exhibits a function of a low-pass filter as well as an orientizer for the emitter's emission.
机译:研究了二维金属领结纳米天线,该天线由两个附近的金属纳米三角形组成,并且在间隙中包含一个分子,用于增强单个发射器的自发发射。为简单起见,将横向磁模型用于仿真,并开发了一组新的表面积分方程进行计算。自发发射的过程简单地分为两个阶段:第一阶段是入射平面波辐照的发射器的激发,第二阶段是激发发射器的发射。对于后者,受激发射器被建模为与纳米天线相互作用的电偶极子。结果表明,金属领结纳米天线既起到纳米透镜的作用,又起偏振器的作用,可提供强的局部电场,其极化方向平行于领结的轴,在发射器的激发间隙中,且其量子产率表现为一个低通滤波器以及一个用于发射器发射的定向器。

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