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Broad-band lightwave synthesized frequency sweeper using synchronous filtering

机译:同步滤波的宽带光波合成扫频器

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We describe a broad-band lightwave synthesized frequency sweeper (LSFS) that uses synchronous filtering. We control the center frequency of the bandpass filter (BPF) in the LSFS so that it tracks the frequency of the circulating pulse. In the first half of this paper, we numerically simulate the accumulation of amplified spontaneous emission (ASE) noise in the LSFS and confirm the effectiveness of synchronous filtering in suppressing the noise. We show that the frequency sweep span can be enlarged to cover the erbium-doped fiber amplifier gain bandwidth completely if ideal synchronous filtering is realized. We also describe the way in which the fluctuation of the BPF center frequency severely limits the number of pulse circulations and we estimate the accuracy required for the BPF center frequency control. In the second half, we report our experimental results. We confirmed the completion of more than 10 000 pulse circulations, which corresponded to a frequency sweep span of <1.2 THz. We also estimated the accuracy of the BPF center frequency control experimentally. As a result, the relationship between the accuracy and the number of pulse circulations was in good agreement with that obtained in the simulation.
机译:我们描述了一种使用同步滤波的宽带光波合成扫频器(LSFS)。我们控制LSFS中的带通滤波器(BPF)的中心频率,以便它跟踪循环脉冲的频率。在本文的上半部分,我们通过数值模拟了LSFS中放大自发辐射(ASE)噪声的累积,并确认了同步滤波在抑制噪声方面的有效性。我们证明,如果实现理想的同步滤波,则可以扩大扫频范围,以完全覆盖掺-光纤放大器的增益带宽。我们还描述了BPF中心频率的波动严重限制脉冲循环次数的方式,并估算了BPF中心频率控制所需的精度。在下半年,我们报告我们的实验结果。我们确认完成了超过10,000个脉冲循环,这对应于<1.2 THz的扫频范围。我们还通过实验估算了BPF中心频率控制的准确性。结果,精度和脉冲循环次数之间的关系与仿真中获得的一致。

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