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Photonic radio-frequency dissemination via optical fiber with high-phase stability

机译:通过具有高相位稳定性的光纤进行光子射频传播

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We demonstrate a photonic radio-frequency transmission system via optical fiber. Optical radio-frequency signal is generated utilizing a Mach-Zehnder modulator based on double-side-band with carrier suppression modulation scheme. The phase error induced by optical fiber transmission is transferred to an intermediate frequency signal by the dual-heterodyne phase error transfer scheme, and then canceled by a phase locked loop. With precise phase compensation, a radio frequency with high-phase stability can be obtained at the remote end. We performed 20.07-GHz radio-frequency transfer over 100-km optical fiber, and achieved residual phase noise of -65 dBc/Hz at 1-Hz offset frequency, and the RMS timing jitter in the frequency range from 0.01 Hz to 1 MHz reaches 110 fs. The long-term frequency stability also achieves 8 x 10(-17) at 10,000 s averaging time. (C) 2015 Optical Society of America
机译:我们演示了通过光纤的光子射频传输系统。利用基于带载波抑制调制方案的双边带的Mach-Zehnder调制器生成光射频信号。由光纤传输引起的相位误差通过双外差相位误差传输方案传输到中频信号,然后由锁相环消除。通过精确的相位补偿,可以在远端获得具有高相位稳定性的射频。我们在100 km光纤上进行了20.07 GHz射频传输,在1 Hz偏移频率下实现了-65 dBc / Hz的残留相位噪声,并且在0.01 Hz至1 MHz频率范围内的RMS时序抖动达到110英尺长期频率稳定性在10,000 s的平均时间上也达到8 x 10(-17)。 (C)2015年美国眼镜学会

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