Volume 5Issue 5
Oct. 2012
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TAO Meng-meng, YANG Peng-ling, LIU Wei-ping, WU Yong, WU Jun-jie, YE Xi-sheng. Response characteristics of fiber Bragg gratings irradiated by high energy lasers[J]. Chinese Optics, 2012, 5(5): 544-549. doi: 10.3788/CO.20120505.0544
Citation: TAO Meng-meng, YANG Peng-ling, LIU Wei-ping, WU Yong, WU Jun-jie, YE Xi-sheng. Response characteristics of fiber Bragg gratings irradiated by high energy lasers[J].Chinese Optics, 2012, 5(5): 544-549.doi:10.3788/CO.20120505.0544

Response characteristics of fiber Bragg gratings irradiated by high energy lasers

doi:10.3788/CO.20120505.0544
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  • Author Bio:

    TAO Meng-meng(1989-), male, born in Zhoukou, Henan Province. Now he is a master student in Northwest Institute of Nuclear Technology. His research interests are fiber lasers and fiber sensors. E-mail:tonylemon@sina.cn YE Xi-sheng(1967-), male, born in Taixing, Zhejiang Province. He is a research professor in Northwest Institute of Nuclear Technology, and he is the director of the State Key Laboratory of Laser Interaction with Matter. His research interest is laser technology and applications. E-mail:yxschx@yeah.net

    TAO Meng-meng(1989-), male, born in Zhoukou, Henan Province. Now he is a master student in Northwest Institute of Nuclear Technology. His research interests are fiber lasers and fiber sensors. E-mail:tonylemon@sina.cn YE Xi-sheng(1967-), male, born in Taixing, Zhejiang Province. He is a research professor in Northwest Institute of Nuclear Technology, and he is the director of the State Key Laboratory of Laser Interaction with Matter. His research interest is laser technology and applications. E-mail:yxschx@yeah.net

  • Received Date:21 Jun 2012
  • Rev Recd Date:23 Aug 2012
  • Publish Date:10 Oct 2012
  • The response characteristics of a Fiber Bragg Grating(FBG) irradiated by high energy laser beams are investigated both theoretically and experimentally to explore the possible applications of the FBG to High Energy Laser(HEL) parameter measurements. The thermal response characteristics of the FBG irradiated by HEL beams are obtained by solving the heat transfer equation using certain approximations. The resonance wavelength information of the FBG is recorded with an interrogator. The experimental results show that the maximum resonance wavelength shift of the FBG changes linearly with the irradiating power density within a certain range, which agrees with the results of numerical simulation.

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