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Volume 33 Issue 3
Apr.  2010
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Thermal effect in pump end of fiber laser with water-jet guided pump

  • In order to solve the serious thermal effect in high power end-pumped fiber lasers,the water-jet guided pump(WJGP) was proposed.In this pumping scheme,the pumping light is coupled into a high-speed water-jet similar to an opticalfiber.The light is guided by the jet and pumped into a following fiber.The thermal effects in the double-clad fiber laser underWJGP and traditional end-pump were analyzed and calculated respectively.With 800W pumping power,the maximum temperature of the pumped end face of fiber declined from 250℃ under traditional end-pump to 30℃ under WJGP,and the temperature of the fiber surface reduced greatly too.It is proved that the cooling effect of WJGP is significant,especially on the fiber's pumped end and the thermal damage on the pump end in a high power fiber laser can be effectively solved.
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Thermal effect in pump end of fiber laser with water-jet guided pump

    Corresponding author: GONG Ma-li, gongml@mail.tsinghua.edu.cn
  • 1. State Key Laboratory of Tribology, Center for Photonics and Electronics, Department of Precision Instruments and Mechanology, Tsinghua University, Beijing 100084, China

Abstract: In order to solve the serious thermal effect in high power end-pumped fiber lasers,the water-jet guided pump(WJGP) was proposed.In this pumping scheme,the pumping light is coupled into a high-speed water-jet similar to an opticalfiber.The light is guided by the jet and pumped into a following fiber.The thermal effects in the double-clad fiber laser underWJGP and traditional end-pump were analyzed and calculated respectively.With 800W pumping power,the maximum temperature of the pumped end face of fiber declined from 250℃ under traditional end-pump to 30℃ under WJGP,and the temperature of the fiber surface reduced greatly too.It is proved that the cooling effect of WJGP is significant,especially on the fiber's pumped end and the thermal damage on the pump end in a high power fiber laser can be effectively solved.

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