Study on the repetition rate locking system of the femtosecond laser

Chunbo Zhao, Tengfei Wu, Li Zhang, Zhenyu Zhu
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引用次数: 2

Abstract

The new technique known as “The femtosecond frequency comb technology” has dramatic impact on the diverse fields of precision measurement and nonlinear optical physics. In order to acquire high-precision and high-stability femtosecond comb, it’s necessary to stabilize the repetition rate fRep and the offset frequency f0. This article presents the details of stabilizing and controlling the comb parameter fRep and finally phase lock the repetition rate of femtosecond laser to a radio frequency reference, derived from an atomic clock. In practice, the narrower the bandwidth of lock system (close-loop system), the higher stability we can achieve, but it becomes easier to be unlocked for external disturb. We adopt a method in servo unit to avoid this problem in this paper. The control parameters P and I can be adjusted and optimized more flexibly. The lock steps depend on the special servo system make it easier to find the right parameters and the lock becomes more convenient and quickly. With this idea, the locked time of repetition rate can be as long as the mode-locking time of the laser. The stability of laser can be evaluated by allan deviation. In this research, the contrast of stability of fRep between the locked laser and the unlocked is given. The new lock system is proved reasonable.
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飞秒激光器重复频率锁定系统的研究
这种被称为“飞秒频率梳技术”的新技术在精密测量和非线性光学物理的各个领域产生了巨大的影响。为了获得高精度、高稳定性的飞秒梳,需要稳定重复频率fRep和偏移频率f0。本文介绍了稳定和控制梳形参数fRep,并最终将飞秒激光的重复频率锁定到一个由原子钟导出的射频参考频率的细节。在实际应用中,锁系统(闭环系统)的带宽越窄,稳定性越高,但由于外界干扰,锁系统更容易被解锁。本文在伺服单元中采用了一种方法来避免这一问题。控制参数P和I可以更灵活地调整和优化。采用特殊的伺服系统,使锁步更容易找到正确的参数,锁步更方便、快捷。利用这一思路,重复频率的锁定时间可以与激光的锁模时间一样长。激光的稳定性可以用allan偏差来评价。在本研究中,给出了锁定激光器和未锁定激光器的fRep稳定性对比。结果表明,新锁系统是合理的。
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