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Volume 35 Issue 6
May  2013
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Analysis of thermal effect of LD double side pumped Nd:GGG heat capacity laser crystal

  • Corresponding author: SHI Peng, pshi56@163.com
  • Received Date: 2011-03-21
    Accepted Date: 2011-03-30
  • Based on the anisotropy semianalytical thermal analysis, the temperature field and thermal distortion of rectangle Nd:GGG crystal in a double side dislocation pumping laser was investigated. A maximum temperature rise of 309.73℃ happened on the front pumping face and the Gaussian radius w became 9.00mm with two 300W laser diode arrays side-pumping Nd:GGG laser crystal. After analyzing the working characteristics of the laser crystal, a thermal model that matches actual situation of the laser crystal was established, and the analytical expressions of the temperature field and thermal distortion field of the rectangle Nd:GGG laser crystal were obtained. With double side dislocation pumping the rectangle Nd:GGG crystal for 10s, there happened maximum thermal distortion of 28.97m and a maximum optical path difference of 13.02m. After stopping pumping for 200s, the maximum temperature rise dropped to 1.01%. These results provide theoretical basis for the optimized design of LD double side pumped heat capacity lasers.
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通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

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Analysis of thermal effect of LD double side pumped Nd:GGG heat capacity laser crystal

    Corresponding author: SHI Peng, pshi56@163.com
  • 1. Department of Physics, Faculty of Science, Xi'an University of Architecture & Technology, Xi'an 710055, China

Abstract: Based on the anisotropy semianalytical thermal analysis, the temperature field and thermal distortion of rectangle Nd:GGG crystal in a double side dislocation pumping laser was investigated. A maximum temperature rise of 309.73℃ happened on the front pumping face and the Gaussian radius w became 9.00mm with two 300W laser diode arrays side-pumping Nd:GGG laser crystal. After analyzing the working characteristics of the laser crystal, a thermal model that matches actual situation of the laser crystal was established, and the analytical expressions of the temperature field and thermal distortion field of the rectangle Nd:GGG laser crystal were obtained. With double side dislocation pumping the rectangle Nd:GGG crystal for 10s, there happened maximum thermal distortion of 28.97m and a maximum optical path difference of 13.02m. After stopping pumping for 200s, the maximum temperature rise dropped to 1.01%. These results provide theoretical basis for the optimized design of LD double side pumped heat capacity lasers.

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