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Beat-spectrum-tailoring of fiber lasers with an intracavity Fabry-Perot filter for high repetition-rate regenerative mode-locking

机译:带有腔内Fabry-Perot滤光片的光纤激光器的拍谱定制,可实现高重复频率的再生锁模

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Summary form only given. The regenerative method of mode locking has been proved to be a very effective way for the generation of extremely stable high repetition pulses from fiber lasers which is the key to future optical communication systems. This is accomplished by extracting a higher harmonic of the cavity beat-note using a high-Q RF filter (Q=100-1500) and feed-backing of the extracted clock signal in a regenerative manner. However, as one desires to increase the operating frequency above several tens of GHz, the use of such RF filters becomes inconvenient because of the difficulty in their fabrication and excessively high insertion loss. A novel scheme which shows an alternative means of regenerative mode locking by avoiding this type of high-Q RF filter and suites for operation at tens of GHz repetition rate is demonstrated. This is based on the tailoring of the beat spectrum of the laser using an intracavity fiber Fabry-Perot (FP) filter, which is available commercially with a free spectral range (FSR) of tens to hundreds of GHz.
机译:仅提供摘要表格。锁模的再生方法已被证明是从光纤激光器产生极其稳定的高重复脉冲的一种非常有效的方法,这是未来光通信系统的关键。这是通过使用高Q RF滤波器(Q = 100-1500)提取腔拍音的高次谐波并以再生方式反馈提取的时钟信号来实现的。但是,由于人们希望将工作频率提高到几十GHz以上,由于这种RF滤波器的制造困难和过高的插入损耗,因此使用它们变得不便。展示了一种新颖的方案,该方案通过避免这种类型的高Q RF滤波器显示了一种可再生模式锁定的替代方法,并提供了以数十GHz重复频率运行的套件。这是基于使用腔内光纤Fabry-Perot(FP)滤波器定制激光器的拍谱的方法,该滤波器可在商业上以数十至数百GHz的自由光谱范围(FSR)获得。

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