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利用表现出磁四极共振的半导体超表面操控量子点发射。

Manipulation of quantum dot emission with semiconductor metasurfaces exhibiting magnetic quadrupole resonances.

作者信息

Vaskin Aleksandr, Liu Sheng, Addamane Sadhvikas, Vabishchevich Polina P, Yang Yuanmu, Balarishnan Ganesh, Sinclair Michael B, Pertsch Thomas, Brener Igal, Staude Isabelle

出版信息

Opt Express. 2021 Feb 15;29(4):5567-5579. doi: 10.1364/OE.414011.

Abstract

Optical metasurfaces were suggested as a route for engineering advanced light sources with tailored emission properties. In particular, they provide a control over the emission directionality, which is essential for single-photon sources and LED applications. Here, we experimentally study light emission from a metasurface composed of III-V semiconductor Mie-resonant nanocylinders with integrated quantum dots (QDs). Specifically, we focus on the manipulation of the directionality of spontaneous emission from the QDs due to excitation of different magnetic quadrupole resonances in the nanocylinders. To this end, we perform both back focal plane imaging and momentum-resolved spectroscopy measurements of the emission. This allows for a comprehensive analysis of the effect of the different resonant nanocylinder modes on the emission characteristics of the metasurface. Our results show that the emission directionality can be manipulated by an interplay of the excited quadrupolar nanocylinder modes with the metasurface lattice modes and provide important insights for the design of novel smart light sources and new display concepts.

摘要

光学超表面被认为是一种用于设计具有定制发射特性的先进光源的途径。特别是,它们能够控制发射方向性,这对于单光子源和发光二极管应用至关重要。在此,我们通过实验研究了由集成量子点(QD)的III-V族半导体米氏共振纳米圆柱组成的超表面的发光情况。具体而言,我们专注于由于纳米圆柱中不同磁四极共振的激发而对量子点自发发射方向性的操控。为此,我们对发射进行了后焦平面成像和动量分辨光谱测量。这使得我们能够全面分析不同共振纳米圆柱模式对超表面发射特性的影响。我们的结果表明,发射方向性可以通过激发的四极纳米圆柱模式与超表面晶格模式的相互作用来操控,这为新型智能光源和新显示概念的设计提供了重要见解。

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