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Efficient detection and control of the carrier-envelope offset frequency in a self-referencing optical frequency synthesizer

机译:自参考光频率合成器中载波包络偏移频率的有效检测和控制

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摘要

An efficient means of isolating and detecting the carrier-envelope offset frequency signal in an optical frequency synthesizer is demonstrated. The technique uses spliced and connectorized fiber for comb broadening, a periodically poled KTP crystal for doubling 1064-nm light in the supercontinuum, and a laser-line filter at 532 nm for comb-section selection. The technique produces an offset frequency with a 40-dB signal-to-noise ratio in a resolution bandwidth of 100kHz with as little as 55 GW/cm~2 of peak pulse intensity inside the fiber. The strong signal-to-noise ratio helps realize an offset frequency signal with frequency instability of 1 mHz at 1 s when controlled through feedback to the optical power driving the femtosecond laser.
机译:演示了一种在光频率合成器中隔离和检测载波包络偏移频率信号的有效方法。该技术使用拼接和连接的光纤进行梳状加宽,使用周期性极化的KTP晶体将超连续谱中的1064 nm光加倍,并使用532 nm的激光线滤波器进行梳状截面选择。该技术以100kHz的分辨率带宽产生具有40dB信噪比的偏移频率,光纤内部的峰值脉冲强度低至55 GW / cm〜2。当通过反馈给驱动飞秒激光器的光功率进行控制时,强大的信噪比有助于在1 s内实现具有1 mHz频率不稳定性的偏移频率信号。

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