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Photonic Mixer Incorporating All-Optical Microwave Frequency Generator Based on Stimulated Brillouin Scattering Using Single Laser Source

机译:使用单激光源基于刺激布里渊散射的光子搅拌器采用全光学微波频率发生器

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In this paper, we report the theoretical and experimental implementation of a photonic mixer for Radio-Over-Fiber (RoF) transmission systems, which incorporates an all-optical 10.87 GHz microwave frequency signal generator based on beating laser frequency with its first order Stimulated Brillouin Scattering (SBS) frequency shift. A 13GHz Radio Frequency (RF) is down-converted to 2.13 GHz Intermediate Frequency (IF) signal. The proposed system configuration represents a cost-effective photonic mixer that can be deployed for up and down conversion around 11 GHz in RoF transmission systems. The optically generated microwave signal of 10.87 GHz has a phase noise of -109 dBc/Hz at 15-MHz offset. The proposed photonic mixer exhibits a Spurious-Free Dynamic Range (SFDR) of 93dB.Hz (2/3). This RoF transmission system configuration deploys dual parallel Gallium Arsenide (GaAs) Mach Zehnder Modulator as a photonic mixer, and a single laser source as a Brillouin pump and as an optical carrier at the same time. To the best of our knowledge, this type of photonic mixers has not been reported in the literature.
机译:在本文中,我们报告了用于无线电流(ROF)传输系统的光子混合器的理论和实验实施,其包括基于跳动激光频率的全光学10.87GHz微波频率信号发生器,其第一阶刺激布里渊散射(SBS)频移。 13GHz射频(RF)下调至2.13 GHz中频(IF)信号。所提出的系统配置表示经济高效的光子混频器,可以在ROF传输系统中围绕11GHz的上下转换部署。光学产生的微波信号为10.87GHz的相位噪声为-109dBc / Hz,15-MHz偏移。所提出的光子混合器具有93dB.Hz(2/3)的无杂散动态范围(SFDR)。该ROF传输系统配置将双行平行镓砷(GaAs)Mach Zehnder调制器部署为光子混合器,以及作为布里渊泵的单个激光源,同时作为光学载体。据我们所知,这种类型的光子混合器尚未在文献中报道。

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