期刊文献+

Stimulated Brillouin Scattering Enhancement Factor Improvement in a 11.6-GHz-Linewidth 1.5-kW Yb-Doped Fiber Amplifier 被引量:2

Stimulated Brillouin Scattering Enhancement Factor Improvement in a 11.6-GHz-Linewidth 1.5-kW Yb-Doped Fiber Amplifier
下载PDF
导出
摘要 The stimulated Brillouin scattering (SBS) threshold enhancement factor in a pure white noise linewidth broad- ening Yb-doped fiber amplifier (YDFA) with a short large mode area fiber is theoretically and experimentally studied. We demonstrate a 1064.08nm, 11.6 GHz finewidth, 1.5 k W output power YDFA with an SBS threshold enhancement of -57 (26 W SBS threshold with single frequency seed). The output beam is near-diffraction lim- ited with a beam quality factor elM2 = 1.15 and a slope efficiency of up to 87%. No SBS or stimulated Raman scattering effects are observed in the whole power range. Further power sealing is limited by the available pump power in our system. The stimulated Brillouin scattering (SBS) threshold enhancement factor in a pure white noise linewidth broad- ening Yb-doped fiber amplifier (YDFA) with a short large mode area fiber is theoretically and experimentally studied. We demonstrate a 1064.08nm, 11.6 GHz finewidth, 1.5 k W output power YDFA with an SBS threshold enhancement of -57 (26 W SBS threshold with single frequency seed). The output beam is near-diffraction lim- ited with a beam quality factor elM2 = 1.15 and a slope efficiency of up to 87%. No SBS or stimulated Raman scattering effects are observed in the whole power range. Further power sealing is limited by the available pump power in our system.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第7期94-97,共4页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant Nos U1330134,61308024 and 11174305 the National High-Technology Research and Development Program of China under Grant No 2014AA041901 the Shanghai Natural Science Foundation under Grant No 11ZR1441400
  • 相关文献

参考文献31

  • 1Liao L, Liu P, Xing Y B, Wang Y B, Peng J G, Dai N L, Li J Y, He B and Zhou J 2015 Chin. Phys. Lett. 32 064201.
  • 2Liu G B, Yang Y F, Lei M, Hu M, Zheng Y, Liu C, Qi Y F, He B, Zhou J, Wei Y R and Lou Q H 2015 Chin. J. Lasers 42 1202009 (in Chinese).
  • 3Richardson D J, NilssonV and Clarkson W A 2010 J. Opt. Soc. Am, B :17 B63.
  • 4Jeong Y, Sahu J K, Payne D N and Nilsson J 2004 Opt. Express 12 6088.
  • 5Lou Q H, He B, Xue Y H, Zhou J, Dong J X, Wei Y R, Wang W, Li Z, Qi Y F, Du S T, Zhao H M and Chen W B 2009 Chin. J. Lasers 36 1277 (in Chinese).
  • 6Yan P, Xiao Q R, Fu C, Wang Y P and Gong M L 2012 Chin. J. Lasers 39 0416001 (in Chinese).
  • 7Zhou J, He B, Xue Y H, Qi Y F, Liu C, Ding Y Q, Liu H K, Li Z and Lou Q H 2011 Acta Opt. Sin. 31 0900129.
  • 8Leng J Y, Liu C, Guo S F, Qi Y F, Xu X J and Zhao Y J 2010 Chin. J. Lasers 37 2491 (in Chinese).
  • 9Liu J, Liu K, Tan F Z and Wang P 2014 Chin. J. Lasers 41 0402005 (in Chinese).
  • 10Schmidt O, "Rekas M, "Wirth C, Rothhardt J, Rhein S, Kliner A, Strecker M, Schreiber T, Limpert J, Eberhardt R and Tiinnermann A 2011 Opt. Express 19 4421.

同被引文献8

引证文献2

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部