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Transmission characteristics of 24.5 Gb/s atmospheric laser communication based on optical frequency comb

机译:基于光学频率梳的24.5 GB / S大气激光通信的传输特性

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Through cascading Mach-Zehnder intensity modulator (MZIM) and phase modulator (PM), an optical frequency comb (OFC) with 7 flat comb teeth is produced. The frequency interval of the OFC is 25 GHz and the flatness is less than 1.5 dB. The 7 channels of the OFC are used as the carrier source of the one-to-many free-space optical (FSO) communication system, and the atmospheric turbulence simulation pool is used to simulate the turbulence intensity in the real atmosphere to verify its feasibility for FSO communication. In the experiment, the bit error rate (BER) and eye diagram are measured under the back-to-back (BTB) conditions, and the temperature difference of atmospheric turbulence simulation pool are 80 degrees C, 150 degrees C and 220 degrees C. Each channel of the system can stably transmit the on-off keying (OOK) signal of 3.5 Gb/s, and the 7 channels can stably transmit the OOK signal of 24.5 Gb/s. Thereby, the OFC can be used in place of multiple lasers or laser arrays as a carrier source for a one-to-many FSO communication system.
机译:通过级联Mach-Zehnder强度调制器(MZIM)和相位调制器(PM),产生具有7个平梳齿的光学频率梳状物(OFC)。 OFC的频率间隔为25GHz,平坦度小于1.5 dB。 OFC的7个通道用作一对多自由空间光学(FSO)通信系统的载体源,并且大气湍流仿真池用于模拟真实气氛中的湍流强度,以验证其可行性对于FSO通信。在实验中,在背对背(BTB)条件下测量误码率(BER)和眼图,大气湍流仿真池的温差为80℃,150摄氏度和220℃。系统的每个通道都可以稳定地传输3.5 Gb / s的开关键控(OOK)信号,7个通道可以稳定地传输24.5 gb / s的oOk信号。由此,可以使用OFC代替多个激光器或激光阵列作为用于一对多FSO通信系统的载波源。

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