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[期刊论文] 作者:WenlongTian,JiangfengZhu,ZhaohuaWang,ZhiyiWei, 来源:ChineseOpticsLetters 年份:2015
We experimentally demonstrate a femtosecond optical parametric oscillator (OPO) synchronously pumped by a home-made solid-state mode-locking Yb:YCOB laser, which is capable of laser pulse as short as 102 fs and average power of 620 mW at th......
[期刊论文] 作者:WenlongTian,JiangfengZhu,ZhaohuaWang,JunliWang,ZhiyiWei, 来源:ChineseOpticsLetters 年份:2014
We demonstrate the dissipative soliton mode locking in a diode pumped Yb:GdYSiO5(Yb:GYSO) laser operating in the positive dispersion regime. We obtain stable passively mode-locked pulses with strong positive chirp and with very steep spectr......
[期刊论文] 作者:LiangLv,QingWang,JiangfengZhu,YuwanZou,ZhaohuaWang,ZhiyiWei, 来源:ChineseOpticsLetters 年份:2012
A diode-pumped picosecond mode-locked Yb:YAG ceramic laser is realized with a slope efficiency of 44%. Output power up to 1.04 W is obtained with pulse duration of 10.4 ps at central wavelength of 1 049.5 nm. The standard deviation of maxim......
[期刊论文] 作者:JinfangYang,ZhaohuaWang,JiajunSong,RenchongLv,XianzhiWang,JiangfengZhu,ZhiyiWei, 来源:HighPowerLaserScienceandEngineering 年份:2021
We demonstrate a diode-pumped femtosecond Yb:CaGdAlO4 (Yb:CALGO) laser with a semiconductor saturable absorber mirror (SESAM) for stable mode-locking operation. A perfect beam profile is measured under 10 W output power with...
[期刊论文] 作者:JiangfengZhu,ZhaohuaWang,QingWang,ZhiguoZhang,QiuhongYang,JunhongYang,YunfengMa,ZhiyiWei, 来源:ChineseOpticsLetters 年份:2012
We experimentally demonstrate a diode-pumped passively mode-locked femtosecond laser with Yb3 -doped yttrium lanthanum oxide ceramic. Mode-locking is achieved by using a semiconductor saturable absorber mirror, and intracavity dispersion is......
[期刊论文] 作者:WenlongTian,GeyangWang,DachengZhang,JiangfengZhu,ZhaohuaWang,XiaodongXu,JunXu,ZhiyiWei, 来源:HighPowerLaserScienceandEngineering 年份:2019
We report on the study of single-mode fiber-laser-pumped mode-locked Yb:CALYO lasers via using a passive saturable absorber and Kerr-lens mode-locking technique, respectively. Up to 3.1-W average power with 103-fs pulse duration is obtained......
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