Khazaeinezhad Reza, Siddiqui Meena, Vakoc Benjamin J
Opt Lett. 2017 May 15;42(10):2046-2049. doi: 10.1364/OL.42.002046.
We demonstrate a novel high-speed and broadband laser architecture based on stretched pulse active mode locking that provides a wavelength-swept and wavelength-stepped output. The laser utilizes a single intracavity 8.3 meter chirped fiber Bragg grating to generate positive and negative dispersion, and can be operated with or without an intracavity fixed Fabry-Perot etalon to generate wavelength-swept and wavelength-stepped (frequency comb) outputs, respectively. Using a four-path delay line at the output, we achieved 16.3 MHz repetition rates and a 62 nm lasing bandwidth centered at 1550 nm. Single-sided double-pass coherence lengths of 1.25 mm for the wavelength-swept configuration and more than 30 mm for the wavelength-stepped configuration were obtained. Relative intensity noise was measured to be better than -140 dB/Hz. The stretched-pulse mode-locked architecture utilizing long chirped fiber Bragg gratings offers a simple and compact design for a broadband wavelength-tuned output at unprecedented speeds, and can address the need for fast sources in applications such as optical ranging, imaging, and sensing.
我们展示了一种基于拉伸脉冲主动锁模的新型高速宽带激光架构,该架构可提供波长扫描和波长步进输出。该激光器利用单个腔内8.3米啁啾光纤布拉格光栅产生正色散和负色散,并且可以在有或没有腔内固定法布里-珀罗标准具的情况下运行,分别产生波长扫描和波长步进(频率梳)输出。在输出端使用四路延迟线,我们实现了16.3MHz的重复频率和以1550nm为中心的62nm激光带宽。对于波长扫描配置,获得了1.25mm的单面双程相干长度;对于波长步进配置,获得了超过30mm的单面双程相干长度。测量得到的相对强度噪声优于-140dB/Hz。利用长啁啾光纤布拉格光栅的拉伸脉冲锁模架构为宽带波长调谐输出提供了一种简单紧凑的设计,速度前所未有的快,并且可以满足光学测距、成像和传感等应用中对快速光源的需求。