Advanced Search

ISSN1001-3806 CN51-1125/TN Map

Volume 31 Issue 5
May  2010
Article Contents
Turn off MathJax

Citation:

Theoretical study on thermal effect in Yb-doped double-clad high power fiber laser

  • Thermal effect of high power fiber laser severely limits the output power and beam quality.Temperature distribution in a double-clad high power fiber laser was analyzed based on thermal conductive equation and boundary condition,and thermal stress distribution was presented by temperature distribution,the change of index refraction induced by temperature and stress was analyzed separately,optic path difference in double-clad high power fiber laser induced by thermal effect was presented.Results indicate that all stresses are compressive,in the fiber core region,however,in the cladding region,the stress is partly compressive and tensile;at the fiber outer boundary,the radial stress is zero while the tangential and longitudinal stress are equal and tensile;the change of index refraction induced by temperature is larger than by stress;optic path difference was caused mostly by the change of temperature,very small by thermal expand and thermal stress.
  • 加载中
  • [1]

    JEONG Y,SAHU J K,PAYNE D N et al.Ytterbium-doped large-core fiber laser with 1kW of continuous wave output power[J].Electron Lett,2004,40(8):470~471.
    [2]

    JEONG Y,SAHU J K,PAYNE D N et al.Ytterbium-doped large-core fiber laser with 1.36kW continuous wave output power[J].Optics Express,2004,12(25):6088~6092.
    [3]

    CHEN J X,SUI Zh,CHEN F Sh et al.Thermal effect of Yb3+-doped double clad fiber laser[J],Laser Technology,2006,30(3):268~270(in Chinese).
    [4]

    BROWN D C,HOFFMAN H J.Thermal stress and thermo-optic effects in high average power double-clad silica fiber lasers[J].IEEE J Q E,2001,37(2):207~217.
    [5]

    WANG Y,XU C Q,PO H.Thermal effects in kilowatt fiber laser[J].IEEE Photonics Technology Letters,2004,16(1):63~65.
    [6]

    XIONG Y,PAN W,LUO B et al.Thermal effects in Yi-doped double high power fiber lasers[J].High Power Laser and Particle Beams,2005,17(4):495~499(in Chinese).
    [7]

    IDO K,AMOS H.Optimization of strongly pumped fiber lasers[J].IEEE Journal of Lightwave Technology,1999,17(5):891~897.
    [8]

    MEI L,WANG Y,WANG Zh J et al.Numerical analysis of the transient-state behavior of Yb3+ doped double clad fiber laser[J].Laser Technology,2006,30(3):226~231(in Chinese).
    [9]

    CHEN Z L,JIANG Z F,YANG H F.Study on thermal of end-pumped Cr:Nd:GSGG rods[J].Laser and Infrared,2004,34(6):430~432(in Chinese).
  • 加载中
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

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

Article views(3259) PDF downloads(883) Cited by()

Proportional views

Theoretical study on thermal effect in Yb-doped double-clad high power fiber laser

    Corresponding author: JIANG Zong-fu, jiangzongfu@yahoo.com.cn
  • 1. Institute of Directed Energy Technology, Photoelectric Science and Engineering School, National University of Defence Technology, Changsha 410073, China

Abstract: Thermal effect of high power fiber laser severely limits the output power and beam quality.Temperature distribution in a double-clad high power fiber laser was analyzed based on thermal conductive equation and boundary condition,and thermal stress distribution was presented by temperature distribution,the change of index refraction induced by temperature and stress was analyzed separately,optic path difference in double-clad high power fiber laser induced by thermal effect was presented.Results indicate that all stresses are compressive,in the fiber core region,however,in the cladding region,the stress is partly compressive and tensile;at the fiber outer boundary,the radial stress is zero while the tangential and longitudinal stress are equal and tensile;the change of index refraction induced by temperature is larger than by stress;optic path difference was caused mostly by the change of temperature,very small by thermal expand and thermal stress.

Reference (9)

Catalog

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return