Affiliation:
1. Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences
2. Shanghai Institute of Optics and Fine Mechanics and Hangzhou Institute of Optics and Fine Mechanics
3. iFibre Optoelectronics Technology Co. Ltd.
4. Peking University
Abstract
We demonstrate a compact ultrafast fiber laser system that can deliver 1.87 GHz pulse train at 1550 nm with a pulse energy of 52 pJ and an ultrashort pulse duration of 57 fs. While an acousto-optic mode-locking fiber laser was used as the seed light source at GHz rate, a stage of Er-doped fiber amplifier boosted the laser power to ∼320 mW, giving a pulse energy of ∼170 pJ. Then, a pulse compression setup was constructed, providing a high compression ratio of ∼10 with a total efficiency of ∼32%. In the cascaded compression configuration, multiple fiber samples with alternately normal and anomalous dispersion were fused together, providing efficient nonlinear spectral broadening while suppressing excessive pulse broadening over propagation. This GHz-rate ultrafast fiber laser, with compact configuration, broad optical spectrum, and high time-resolving ability could be used as the seed light source for constructing high-rate, high-power ultrafast laser systems and may find a few applications in optical measurements and microwave photonics.
Funder
National Natural Science Foundation of China
Strategic Priority Research Program of the Chinese Academy of Science
Shanghai Science and Technology Plan Project Funding
Shanghai Science and Technology Innovation Action Plan
National High-Level Talent Youth Project
Guangdong Major Project of Basic and Applied Basic Research
Fuyang High-Level Talent Group Project