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Photon Generation Scheme of 32-Fold Millimeter-Wave Signal Based on Mach-Zehnder Modulator
Authors:Shali Wang  Dongfei Wang  Lei Ren  Hu Zhang  Zihao Wu  Wusong Li  Fenghui Zhang  Xiangqing Wang
Institution:1. School of Physics and Electronic Engineering, Fuyang Normal University, Fuyang, 236037 China;2. Beijing Institute of Graphic Communication, Beijing, 102600 China;3. Lu'an Traditional Chinese Medical Hospital, Anhui, 237000 China;4. West Anhui University, Lu'an, 237012 China
Abstract:This paper proposes a 32-tupling frequency millimeter-wave (MMW) filter-free system based on four Mach-Zehnder Modulators (MZM) connected in parallel and cascaded with a simple radio-fiber (RoF) link structure. The four MZMs are all at the maximum transmission point (MATP), and the radio frequency (RF) driving voltage phase difference between MZMs is π /2. The center carrier is suppressed by using an optical attenuator (OATT) and an optical phase shifter (OPS). Two parallel MZMs can generate ±8th order and ±12th order optical sidebands, and the ±4th order optical sidebands can be suppressed by adjusting the modulation index m of the MZM, using cascaded two dual-parallel MZMS(DPMZM) and the phase difference of the RF signal source is π/4 to generate ±16th order optical sidebands. The theoretical analysis and simulation experiments are performed for the scheme proposed in this paper. The results show that the simulated and theoretical values of the optical sideband suppression ratio (OSSR) for ±16th order optical sideband signals are 60.02 and 59.96 dB, respectively, and the simulated and theoretical values of the RF sideband suppression ratio (RFSSR) for the 32-tupling MMW signal are 56.34 and 53.94 dB, respectively.
Keywords:Mach–Zendel modulator(MZM)  millimeter wave(MMW)  optical sideband suppression ratio(OSSR)  RF sideband suppression ratio(RFSSR)
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