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Cancellation of the signal fading for 60 GHz subcarrier multiplexed optical DSB signal transmission in nondispersion shifted fiber using midway optical phase conjugation

机译:使用中途光学相位共轭消除非色散位移光纤中60 GHz子载波复用光学DSB信号传输的信号衰减

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In millimeter-wave (mm-wave) optical double sideband (DSB) signal transmission systems, the received radio frequency (RF) power fades periodically because of the group velocity dispersion (GVD) and the self-phase modulation (SPM) of optical fibers. In this paper, cancellation of the signal fading by using midway optical phase conjugation in mm-wave subcarrier multiplexed (SCM) optical DSB signal is analyzed. Fading-free 60 GHz mm-wave optical DSB signal transmission over 100 km-long nondispersion shifted single-mode fiber at 1550 nm by using a semiconductor optical amplifier (SOA) optical phase conjugator (OPC) in the midway of optical link is experimentally demonstrated for the first time. Finally, the degradation factor of the OPC system is also discussed.
机译:在毫米波(双边)光学双边带(DSB)信号传输系统中,由于光纤的群速度色散(GVD)和自相位调制(SPM),接收到的射频(RF)功率周期性地衰减。本文分析了毫米波子载波多路复用(DSM)光学DSB信号中途光学相位共轭对信号衰减的消除。实验证明了在光链路中途通过使用半导体光放大器(SOA)光相位共轭器(OPC)在1550 nm处100 km长的无色散位移单模光纤上无衰落的60 GHz毫米波光DSB信号传输首次。最后,还讨论了OPC系统的降级因素。

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