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Diode-pumped high-power gigahertz Kerr-lens mode-locked solid-state oscillator enabled by a dual-confocal ring cavity

Authors :
Zheng, Li
Tian, Wenlong
Xue, Hanchen
Chen, Yuehang
Wang, Geyang
Bai, Chuan
Yu, Yang
Wei, Zhiyi
Zhu, Jiangfeng
Source :
High Power Laser Science and Engineering; November 2024, Vol. 12 Issue: 1
Publication Year :
2024

Abstract

AbstractFemtosecond oscillators with gigahertz (GHz) repetition rate are appealing sources for spectroscopic applications benefiting from the individually accessible and high-power comb line. The mode mismatch between the potent pump laser diode (LD) and the incredibly small laser cavity, however, limits the average output power of existing GHz Kerr-lens mode-locked (KLM) oscillators to tens of milliwatts. Here, we present a novel method that solves the difficulty and permits high average power LD-pumped KLM oscillators at GHz repetition rate. We propose a numerical simulation method to guide the realization of Kerr-lens mode-locking and comprehend the dynamics of the Kerr-lens mode-locking process. As a proof-of-principle demonstration, an LD-pumped Yb:KGW oscillator with up to 6.17-W average power and 184-fs pulse duration at 1.6-GHz repetition rate is conducted. The simulation had a good agreement with the experimental results. The cost-effective, compact and powerful laser source opens up new possibilities for research and industrial applications.

Details

Language :
English
ISSN :
20954719 and 20523289
Volume :
12
Issue :
1
Database :
Supplemental Index
Journal :
High Power Laser Science and Engineering
Publication Type :
Periodical
Accession number :
ejs67993703
Full Text :
https://doi.org/10.1017/hpl.2024.42