Li Dawei, Qian Cheng, Li Ye, Zhao Jianye
Opt Express. 2017 Apr 17;25(8):9071-9077. doi: 10.1364/OE.25.009071.
We report a fiber laser noise reduction method by locking it to an actively stabilized optical delay line, specifically a fiber-based Mach-Zehnder interferometer with a 10 km optical fiber spool. The fiber spool is used to achieve large arm imbalance. The heterodyne signal of the two arms converts the laser noise from the optical domain to several megahertz, and it is used in laser noise reduction by a phase-locked loop. An additional phase-locked loop is induced in the system to compensate the phase noise due to environmentally induced length fluctuations of the optical fiber spool. A major advantage of this structure is the efficient reduction of out-of-loop frequency noise, particularly at low Fourier frequency. The frequency noise reaches -30 dBc/Hz at 1 Hz, which is reduced by more than 90 dB compared with that of the laser in its free-running state.
我们报告了一种通过将光纤激光器锁定到主动稳定的光学延迟线来降低其噪声的方法,具体而言,该光学延迟线是一个基于光纤的马赫-曾德尔干涉仪,带有一个10公里长的光纤线轴。该光纤线轴用于实现较大的臂长失衡。两臂的外差信号将激光器的噪声从光域转换到几兆赫兹,然后通过锁相环用于降低激光噪声。系统中引入了一个额外的锁相环,以补偿由于环境引起的光纤线轴长度波动而产生的相位噪声。这种结构的一个主要优点是能有效降低环路外频率噪声,特别是在低傅里叶频率下。在1赫兹时,频率噪声达到-30 dBc/Hz,与自由运行状态下的激光器相比,降低了超过90 dB。