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通过片上光学技术——WiNOT耦合到硅波导的等离子体维瓦尔第天线阵列用于无线网络

Array of plasmonic Vivaldi antennas coupled to silicon waveguides for wireless networks through on-chip optical technology - WiNOT.

作者信息

Calò Giovanna, Bellanca Gaetano, Alam Badrul, Kaplan Ali Emre, Bassi Paolo, Petruzzelli Vincenzo

出版信息

Opt Express. 2018 Nov 12;26(23):30267-30277. doi: 10.1364/OE.26.030267.

Abstract

Optical technology applied to on-chip wireless communication is particularly promising to overcome the performance limitations of the state-of-the-art networks on-chip. A key enabling component for such applications is the plasmonic antenna coupled to conventional silicon waveguides, which can guarantee full compatibility with standard optical circuitry. In this paper, we propose an antenna array configuration based on tilted plasmonic Vivaldi antennas coupled to a silicon waveguide. The details of the single antenna and of the array design are reported. The radiation characteristics of the array are suitable for on-chip point-to-point communication, i.e. in-plane maximum gain of 14.70 dB for an array with five antennas. The array exploits a travelling wave feeding scheme and, therefore, is compact in size (about 3.5 µm × 8.7 µm ).

摘要

应用于片上无线通信的光学技术在克服现有片上网络性能限制方面特别有前景。此类应用的一个关键 enabling 组件是耦合到传统硅波导的等离子体天线,它可以保证与标准光学电路完全兼容。在本文中,我们提出了一种基于倾斜等离子体维瓦尔第天线并耦合到硅波导的天线阵列配置。报告了单个天线和阵列设计的细节。该阵列的辐射特性适用于片上点对点通信,即对于一个有五个天线的阵列,面内最大增益为14.70 dB。该阵列采用行波馈电方案,因此尺寸紧凑(约3.5 µm × 8.7 µm)。

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