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3D optical Yagi–Uda nanoantenna array

机译:^光学八木-例如nanoAntenna阵列

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摘要

Future photonic circuits with the capability of high-speed data processing at optical frequencies will rely on the implementation of efficient emitters and detectors on the nanoscale. Towards this goal, bridging the size mismatch between optical radiation and subwavelength emitters or detectors by optical nanoantennas is a subject of current research in the field of plasmonics. Here we introduce an array of three-dimensional optical Yagi–Uda antennas, fabricated using top-down fabrication techniques combined with layer-by-layer processing. We show that the concepts of radiofrequency antenna arrays can be applied to the optical regime proving superior directional properties compared with a single planar optical antenna, particularly for emission and reception into the third dimension. Measuring the optical properties of the structure reveals that impinging light on the array is efficiently absorbed on the subwavelength scale because of the high directivity. Moreover, we show in simulations that combining the array with suitable feeding circuits gives rise to the prospect of beam steering at optical wavelengths.
机译:具有光频率上的高速数据处理能力的未来光子电路将依赖于纳米级高效发射器和检测器的实现。为了实现这一目标,通过光学纳米天线弥补光学辐射与亚波长发射器或检测器之间的尺寸失配是等离子体技术领域当前研究的主题。在这里,我们介绍了一系列三维光学八木-宇田天线,这些天线是使用自上而下的制造技术与逐层处理相结合制造的。我们表明,与单个平面光学天线相比,射频天线阵列的概念可以应用于证明优越的方向性的光学方案,特别是在三维空间的发射和接收方面。测量该结构的光学性质表明,由于高方向性,阵列上的入射光在亚波长范围内得到了有效吸收。此外,我们在仿真中表明,将阵列与合适的馈电电路相结合会带来在光波长处光束转向的前景。

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