Chinese Journal of Lasers, Volume. 46, Issue 10, 1001007(2019)

Nd∶Glass Amplifier with Repetition Rate Fabricated by Flash-Lamp Pumping and Liquid Cooling Method

Bingyan Wang1, Yangshuai Li1、*, Panzheng Zhang1、**, Li Wang1, Qiang Liu1, Haidong Zhu1, Ailin Guo1, Yanli Zhang1, Xu Zhang1, Qiong Zhou1, Shenlei Zhou1, Jian Zhu2, Weixin Ma2, Baoqiang Zhu1, and Jianqiang Zhu1
Author Affiliations
  • 1National Laboratory on High Power Lasers and Physics, Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences, Shanghai 201800, China
  • 2Shanghai Institute of Laser Plasma, China Academy of Engineering and Physics, Shanghai 201800, China
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    A repetition rate laser amplifier is the key component of a repetition rate laser; here, the repetition rate of the amplifier is determined by precisely controlling the heat produced during pumping and amplifying. To achieve a repetition rate laser exhibiting kilojoule output energy, a repetition rate laser amplifier prototype with a diameter of 130 mm is developed based on flash-lamp pumping, a neodymium glass gain medium, and liquid cooling. After ensuring the rational mechanical design and selecting a coolant with suitable properties, the developed amplifier prototype operates at 1 shot per minute and exhibits a double pass small signal gain of 1.3189. At 1053 nm, the PV (peak to valley) of 10-shot average double pass wavefronts for the amplifier prototype are 0.2718λ and 0.3223λ when the temperatures of coolant are 20 ℃ and 30 ℃, respectively.

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    Bingyan Wang, Yangshuai Li, Panzheng Zhang, Li Wang, Qiang Liu, Haidong Zhu, Ailin Guo, Yanli Zhang, Xu Zhang, Qiong Zhou, Shenlei Zhou, Jian Zhu, Weixin Ma, Baoqiang Zhu, Jianqiang Zhu. Nd∶Glass Amplifier with Repetition Rate Fabricated by Flash-Lamp Pumping and Liquid Cooling Method[J]. Chinese Journal of Lasers, 2019, 46(10): 1001007

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    Paper Information

    Category: laser devices and laser physics

    Received: Mar. 28, 2019

    Accepted: May. 13, 2019

    Published Online: Oct. 25, 2019

    The Author Email: Li Yangshuai (yshli@siom.ac.cn), Zhang Panzheng (nwpuzhangpanzheng@163.com)

    DOI:10.3788/CJL201946.1001007

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