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Optical single sideband modulation based on a high-order birefringent filter using cascaded Solc-Sagnac and Lyot-Sagnac loops

机译:基于高阶双折射滤波器的光学单边带调制,使用级联的Solc-Sagnac和Lyot-Sagnac环路

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摘要

We propose and experimentally demonstrate a simple and flexible photonic approach to implementing single sideband (SSB) modulation based on optical spectral filtering. The high-order birefringent filter is realized through the cascaded Solc-Sagnac and Lyot-Sagnac loops. By adjusting the rotation angle of the polarization controller (PC), the notch position to remove undesired sidebands changes. The frequency for SSB modulation varies accordingly. The periodical response of the filter spectrum allows both the carrier wavelength and the optical carrier to sideband ratio (OCSR) to be tunable. SSB modulation over a frequency range from 5 to 40 GHz and tunable OCSR ranging from -9.174 to 34.408 dB are obtained. The significant merits of the proposed approach are the simple structure, easy operation, large frequency range, tunable OCSR, and wavelength independence. The approach has potential applications in optimizing the transmission performance of photonic microwave signal processing systems. (C) 2016 Optical Society of America
机译:我们提出并通过实验证明了一种简单而灵活的光子方法,可以基于光谱滤波实现单边带(SSB)调制。高阶双折射滤波器是通过级联的Solc-Sagnac和Lyot-Sagnac环路实现的。通过调整偏振控制器(PC)的旋转角度,用于去除不需要的边带的切口位置会发生变化。 SSB调制的频率相应地变化。滤波器频谱的周期性响应允许载波波长和光学载波边带比(OCSR)均可调。获得了5至40 GHz频率范围内的SSB调制以及-9.174至34.408 dB的可调OCSR。该方法的主要优点是结构简单,易于操作,频率范围宽,可调谐OCSR和波长独立性。该方法在优化光子微波信号处理系统的传输性能方面具有潜在的应用。 (C)2016美国眼镜学会

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