摘要
基于Yb∶YAG单碟片模块设计并搭建了激光再生放大器,实现了重复频率为1 kHz、脉冲能量为107 mJ、脉冲宽度为1.2 ns的近衍射极限激光输出,x的光束质量因子(M^(2)_(x))和y方向的光束质量因子(M^(2)_(y))分别为1.07与1.05,光光转换效率为11%。激光中心波长为1031.7 nm,光谱宽度为2.04 nm,该光谱宽度支持将激光的脉宽压缩至735 fs。据我们所知,这是国内首次使用单碟片激光再生放大器实现重复频率为1 kHz、单脉冲能量为107 mJ的激光输出。
Objective In recent years,the thin disk laser has been shown to have significant advantages in terms of structure,efficiency,and beam quality.It has been used to realize ultrafast lasers with high repetition rates,large pulse energies,and high average powers.It has important applications in basic scientific research,industrial production,national defense and military,biomedicine,and other fields.Based on theoretical and numerical analyses,this paper presents an analysis and design of a thin disk regenerative amplifier with a large fundamental mode volume.It can afford a laser output with pulsed energy exceeding 100 mJ.Methods Based on ABCD matrix theory,the optical resonator of the thin disk regenerative amplifier is designed to ensure a laser output with basic mode size.By optimizing the parameters of the pump and seed lasers in the amplifier cavity and managing the thermal effect in the amplification process,the regenerative amplifier can achieve high energy pulse laser output.The experimental device of the disk regeneration amplifier,shown in Fig.1,contains a seed source,optical isolator,Faraday rotator,Pockels cell,thin film polarizer,regeneration amplifier cavity,and thin disk module with a 48-pass pump structure.Results and Discussions The regenerative amplifier provides a laser output with a repetition rate of 1 kHz,single pulse energy of 107.3 mJ[Fig.2(a)],pulse width of 1.2 ns[Fig.2(c)],and opticaltooptical conversion efficiency of 11%.In the experiment,a CMOS camera is used to measure the diameter of the light spot in the x and y directions.The Gauss fitting of the measurement results indicates that the beam quality factor(M 2 x)of the output laser beam in the x direction and the beam quality factor(M 2 y)of the output laser beam in the y direction are 1.07 and 1.05,respectively[Fig.2(b)],and the beam quality is near the diffraction limit.The rootmeansquare(RMS)of pulse amplitude stability is 1.26%.The amplified laser spectral width is 2.04 nm[Fig.2(d)],which supports the compression of the laser pulse width to 735 fs,as shown by theoretical calculations.Conclusions This paper presents the optimization of the mode matching of the amplifier cavity based on the single thin disk module regenerative amplifier and the realization of the amplification laser output with a single pulse energy of 107 mJ.In future studies,we will continue to optimize the design and experimental scheme of the regenerative amplifier cavity and use multilayer dielectric gratings to compress the pulse width of a chirped pulse with high pulse energy to achieve laser output with higher pulse energy,higher average power,and narrower pulse width.
作者
陈飞
于晶华
陈毅
孙俊杰
姚志焕
张逸文
于德洋
何洋
张阔
Chen Fei;Yu Jinghua;Chen Yi;Sun Junjie;Yao Zhihuan;Zhang Yiwen;Yu Deyang;He Yang;Zhang Kuo(State Key Laboratory of Laser Interaction with Matter,Changchun Institute of Optics,Fine Mechanics and Physics,Chinese Academy of Sciences,Changchun 130033,Jilin,China;University of Chinese Academy of Sciences,Beijing 100049,China)
出处
《中国激光》
EI
CAS
CSCD
北大核心
2023年第5期202-204,共3页
Chinese Journal of Lasers
基金
长春光机所创新重大项目(E10302Y3M0)
吉林省青年成长科技计划项目(20220508041RC)。