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电驱动单向光学纳米天线。

Electrically Driven Unidirectional Optical Nanoantennas.

机构信息

Department of Materials Engineering, KU Leuven , B-3001 Leuven, Belgium.

IMEC , Kapeldreef 75, B-3001 Leuven, Belgium.

出版信息

Nano Lett. 2017 Dec 13;17(12):7433-7439. doi: 10.1021/acs.nanolett.7b03312. Epub 2017 Nov 2.

Abstract

Directional antennas revolutionized modern day telecommunication by enabling precise beaming of radio and microwave signals with minimal loss of energy. Similarly, directional optical nanoantennas are expected to pave the way toward on-chip wireless communication and information processing. Currently, on-chip integration of such antennas is hampered by their multielement design or the requirement of complicated excitation schemes. Here, we experimentally demonstrate electrical driving of in-plane tunneling nanoantennas to achieve broadband unidirectional emission of light. Far-field interference, as a result of the spectral overlap between the dipolar emission of the tunnel junction and the fundamental quadrupole-like resonance of the nanoantenna, gives rise to a directional radiation pattern. By tuning this overlap using the applied voltage, we record directivities as high as 5 dB. In addition to electrical tunability, we also demonstrate passive tunability of the directivity using the antenna geometry. These fully configurable electrically driven nanoantennas provide a simple way to direct optical energy on-chip using an extremely small device footprint.

摘要

定向天线通过最小化能量损失实现无线电和微波信号的精确波束发射,从而彻底改变了现代电信。类似地,定向光学纳米天线有望为芯片上的无线通信和信息处理铺平道路。目前,由于其多元件设计或复杂的激励方案的要求,这种天线在芯片上的集成受到阻碍。在这里,我们通过实验演示了平面隧道纳米天线的电驱动,以实现光的宽带单向发射。由于隧道结的偶极子发射与纳米天线的基本四极子样共振之间的光谱重叠,远场干涉导致了定向辐射模式。通过使用施加电压来调整这种重叠,我们记录了高达 5 dB 的指向性。除了电可调性,我们还通过天线几何形状证明了指向性的被动可调性。这些完全可配置的电驱动纳米天线提供了一种使用极小设备占地面积在芯片上定向光能量的简单方法。

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