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Ultrastable Offset-Locking Continuous Wave Laser to a Frequency Comb with a Compound Control Method for Precision Interferometry

机译:采用精密干涉测量的复合控制方法将超稳定偏置锁定连续波激光打到频率梳

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摘要

A simple and robust analog feedforward and digital feedback compound control system is presented to lock the frequency of a slave continuous wave (CW) laser to an optical frequency comb. The beat frequency between CW laser and the adjacent comb mode was fed to an acousto-optical frequency shifter (AOFS) to compensate the frequency dithering of the CW laser. A digital feedback loop was achieved to expand the operation bandwidth limitation of the AOFS by over an order of magnitude. The signal-to-noise ratio of the interference signal was optimized using a grating-based spectral filtering detection unit. The complete system achieved an ultrastable offset-locking of the slave CW laser to the frequency comb with a relative stability of ±3.62 × 10 . The Allan deviations of the beat frequency were 8.01 × 10 and 2.19 × 10 for a gate time of 10 s and 1000 s, respectively. The findings of this study may further improve laser interferometry by providing a simple and robust method for ultrastable frequency control.
机译:提出了一种简单而强大的模拟前馈和数字反馈复合控制系统,以将从连续波(CW)激光器的频率锁定到光学频率梳。 CW激光器和相邻梳状模式之间的拍频被馈送到声光移频器(AOFS),以补偿CW激光器的频率抖动。实现了数字反馈环路,将AOFS的操作带宽限制扩大了一个数量级。使用基于光栅的光谱滤波检测单元可以优化干扰信号的信噪比。整个系统实现了从CW激光器到频率梳的超稳定偏移锁定,相对稳定性为±3.62×10。对于10 s和1000 s的门控时间,拍频的Allan偏差分别为8.01×10和2.19×10。这项研究的发现可以通过提供一种简单而强大的超稳定频率控制方法来进一步改善激光干涉测量技术。

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