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基于干涉分数希尔伯特变换的集成可重构光子滤波器。

Integrated reconfigurable photonic filters based on interferometric fractional Hilbert transforms.

作者信息

Sima C, Cai B, Liu B, Gao Y, Yu Y, Gates J C, Zervas M N, Smith P G R, Liu D

出版信息

Appl Opt. 2017 Oct 1;56(28):7978-7984. doi: 10.1364/AO.56.007978.

Abstract

In this paper, we present integrated reconfigurable photonic filters using fractional Hilbert transformers (FrHTs) and optical phase tuning structure within the silica-on-silicon platform. The proposed structure, including grating-based FrHTs, an X-coupler, and a pair of thermal tuning filaments, is fabricated through the direct UV grating writing technique. The thermal tuning effect is realized by the controllable microheaters located on the two arms of the X-coupler. We investigate the 200 GHz maximum bandwidth photonic FrHTs based on apodized planar Bragg gratings, and analyze the reflection spectrum responses. Through device integration and thermal modulation, the device could operate as photonic notch filters with 5 GHz linewidth and controllable single sideband suppression filters with measured 12 dB suppression ratio. A 50 GHz instantaneous frequency measuring system using this device is also schematically proposed and analyzed with potential 3 dB measurement improvement. The device could be configured with these multiple functions according to need. The reconfigurable structure has great potential in ultrafast all-optical signal processing fields.

摘要

在本文中,我们展示了在硅基二氧化硅平台内使用分数希尔伯特变换器(FrHT)和光学相位调谐结构的集成可重构光子滤波器。所提出的结构包括基于光栅的FrHT、一个X耦合器和一对热调谐细丝,通过直接紫外光栅写入技术制造。热调谐效应由位于X耦合器两臂上的可控微型加热器实现。我们研究了基于切趾平面布拉格光栅的200GHz最大带宽光子FrHT,并分析了反射光谱响应。通过器件集成和热调制,该器件可以作为线宽为5GHz的光子陷波滤波器以及实测抑制比为12dB的可控单边带抑制滤波器工作。还示意性地提出并分析了一个使用该器件的50GHz瞬时频率测量系统,其潜在的测量改善为3dB。该器件可根据需要配置这些多种功能。这种可重构结构在超快全光信号处理领域具有巨大潜力。

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