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用于可见光的高度定向自下而上的 3D 纳米天线。

Highly directional bottom-up 3D nanoantenna for visible light.

机构信息

Department of Applied Physics, Chalmers University of Technology, Göteborg 41296, Sweden.

出版信息

Sci Rep. 2013;3:2311. doi: 10.1038/srep02311.

Abstract

Controlling light at the nanoscale is of fundamental importance and is essential for applications ranging from optical sensing and metrology to information processing, communications, and quantum optics. Considerable efforts are currently directed towards optical nanoantennas that directionally convert light into strongly localized energy and vice versa. Here we present highly directional 3D nanoantenna operating with visible light. We demonstrate a simple bottom-up approach to produce macroscopic arrays of such nanoantennas and present a way to address their functionality via interaction with quantum dots (QDs), properly embedded in the structure of the nanoantenna. The ease and accessibility of this structurally robust optical antenna device prompts its use as an affordable test bed for concepts in nano-optics and nanophotonics applications.

摘要

控制纳米尺度的光至关重要,对于从光学传感和计量到信息处理、通信和量子光学等应用都必不可少。目前,人们投入了大量精力研究光学纳米天线,这些天线可以将光定向转换为强局域能量,反之亦然。在这里,我们展示了一种在可见光下工作的高度定向的 3D 纳米天线。我们提出了一种简单的自下而上的方法来制备这种纳米天线的宏观阵列,并展示了通过与量子点(QD)相互作用来解决其功能的方法,量子点恰当地嵌入到纳米天线的结构中。这种结构坚固的光学天线器件易于使用且易于获取,因此可作为纳米光学和纳米光子学应用中概念的经济实惠的测试平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/386e/3727054/68e5e0623e95/srep02311-f1.jpg

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