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An Actively Mode-Locked Fiber Laser for Sampling in a Wide-Bandwidth Opto-Electronic Analog-to-Digital Converter

机译:一种主动锁定光纤激光器,用于在宽带宽光电模数转换器中采样采样

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We have designed, built and tested an actively mode-locked fiber laser, operating at 1550 nm, for use as the sampling waveform in an opto-electronic analog-to-digital converter (ADC). Analysis shows that, in order to digitize a 10-GHz signal to 10 bits of resolution, the sampling pulsewidth must be less than 2.44 ps, the RMS timing jitter must be below 31.0 fs, and the RMS amplitude jitter must be below 0.195%. Fiber lasers have proven to have the capability to narrowly exceed these operating requirements. The fiber laser is a "sigma" laser consisting of Er-doped gain medium, dispersion-compensating fiber, nonlinear fiber, a Faraday rotation mirror, polarization-maintaining fiber and components, and diode pump lasers. The active mode-locking is achieved by a Mach-Zehnder interferometer modulator, driven by a frequency synthesizer operating at the desired sampling rate. A piezo-electric element is used in a feedback control loop to stabilize the output PRF against environmental changes. Measurements of the laser output revealed the maximum nominal PRF to be 16 GHz, the nominal pulsewidth to be 7.2 ps, and the nominal RNS timing jitter to be 386 fs. Incorporating this laser into a sampling ADC would allow us to sample a 805-MHz bandwidth signal to a resolution of 10 bits as limited by timing jitter. Techniques to reduce the timing-jitter bottleneck are discussed.
机译:我们已经设计,构建和测试了一个主动锁定的光纤激光器,在1550nm下工作,用作光电模数转换器(ADC)中的采样波形。分析表明,为了将10-GHz信号数字化为10位分辨率,采样脉冲宽度必须小于2.44 PS,RMS定时抖动必须低于31.0 FS,并且RMS幅度抖动必须低于0.195%。纤维激光已证明具有差别超过这些操作要求的能力。光纤激光器是由ER掺杂增益介质,分散纤维,非线性纤维,法拉第旋转镜,偏振保持纤维和部件以及二极管泵激光器组成的“Sigma”激光器。由Mach-Zehnder干涉仪调制器实现有源模式锁定,由以所需采样率运行的频率合成器驱动。压电元件用于反馈控制回路中,以稳定输出PRF免受环境变化的影响。激光输出的测量显示最大标称PRF为16 GHz,标称脉冲宽度为7.2 ps,标称RNS定时抖动为386 fs。将该激光器纳入采样ADC将允许我们将805-MHz带宽信号采样至10位的分辨率,其由时序抖动有限。讨论了减少时间抖动瓶颈的技术。

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