High-power femtosecond regenerative amplifier based on Yb:CaYAlO4 dual-crystal configuration

Author:

Song Jiajun1,Peng Yujie1ORCID,Shen Liya12,Sun Jianyu13,Luo Guangxin14,Xu Xiaodong5,Xu Jun6,Leng Yuxin1ORCID

Affiliation:

1. Chinese Academy of Sciences (CAS)

2. ShanghaiTech University

3. University of Chinese Academy of Sciences

4. University of Science and Technology of China

5. Jiangsu Normal University

6. Tongji University

Abstract

A thermal lens insensitive regenerative amplifier (RA) with a dual Yb:CaYAlO4 (Yb:CYA) crystal configuration for extending gain spectra is demonstrated for the first time, to the best of our knowledge. By orthogonalizing the orientation of two a-cut Yb:CYA crystals in one RA, the Q switched spectrum with a full width at half maximum of 15.4 nm is generated, which is 1.5 and 1.6 times of the Q switched spectral bandwidth with π- and σ-polarization, respectively. With chirped pulses injection, this RA can deliver laser pulses with an average power exceeding 10 W at the repetition rate of 20–800 kHz and pulse energy of 1.5 mJ at 1 kHz. This is the highest average power from the Yb:CYA RA to the best of our knowledge. Finally, compressed pulses of 163 fs with 92% overall efficiency are realized. Thanks to the heat insensitive cavity design and excellent thermodynamic properties of the Yb:CYA crystal, the output laser beam is close to the diffraction limit with an M2 value of 1.07 × 1.07.

Funder

National Natural Science Foundation of China

Shanghai Rising-Star Program

Youth Innovation Promotion Association of the Chinese Academy of Sciences

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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