∼2 μm Tm3+/Yb3+-doped tellurite fibre laser

被引:0
|
作者
Billy Richards
Yuen Tsang
David Binks
Joris Lousteau
Animesh Jha
机构
[1] The University of Leeds,Institute for Materials Research, School of Process, Environment and Materials Engineering
[2] The University of Manchester,Photon Physics Group, School of Physics and Astronomy
关键词
Pump Power; Fibre Laser; TeO2; Output Coupler; Laser Level;
D O I
暂无
中图分类号
学科分类号
摘要
We present, for the first time, laser emission in the range 1.910–1.994 μm in Tm3+/Yb3+-doped tellurite fibre when pumped using an Yb3+-doped double-clad silica fibre laser operating at 1.088 μm. With this pump scheme there was strong pump excited state absorption (ESA) which caused upconversion emission at 800 nm and 480 nm due to the Tm3+: 3H4 → 3H6 and Tm3+: 1G4 → 3H6 transitions, respectively. This strong ESA limited the maximum slope efficiency to 10% with respect to absorbed pump power, and the maximum output power to 67 mW. This is however the highest output power which has been achieved in a tellurite fibre laser so far. The lowest observed threshold was 114 mW for a 22 cm long fibre and a 90% reflective output coupler. Further power scaling was limited due to thermal damage at the pump end of the fibre. The optimum fibre length for this arrangement was around 16 cm but lasing was achieved in lengths ranging from <9 to 30 cm. Tellurite glass offers significant advantages over silicate and fluoride glasses which make it a very promising material for compact, medium power, near and mid-IR fibre lasers for range-finding, medical and atmospheric monitoring and sensing applications.
引用
收藏
页码:317 / 320
页数:3
相关论文
共 50 条
  • [31] White light generation via up-conversion and blue tone in Er3+/Tm3+/Yb3+-doped zinc-tellurite glasses
    Rivera, V. A. G.
    Ferri, F. A.
    Nunes, L. A. O.
    Marega, E., Jr.
    OPTICAL MATERIALS, 2017, 67 : 25 - 31
  • [32] Numerical rate equation modelling of a 1.6 μm pumped ∼2 μm Tm3+-doped tellurite fibre laser
    Richards, Billy D. O.
    Evans, Craig A.
    Ikonic, Zoran
    Harrison, Paul
    Tsang, Yuen H.
    Binks, David J.
    Lousteau, Joris
    Jha, Animesh
    SOLID STATE LASERS AND AMPLIFIERS III, 2008, 6998
  • [33] Preparation and spectroscopic properties of Yb3+-doped tellurite glasses
    Feng, X
    Qi, CH
    Lin, FY
    Hu, HF
    CURRENT DEVELOPMENTS IN OPTICAL ELEMENTS AND MANUFACTURING, 1998, 3557 : 36 - 43
  • [34] Spectroscopic properties of Tm3+/Yb3+-codoped tellurite material
    Huang, Qingjie
    Chang, Jun
    Ji, Wei
    Journal of Optical Communications, 2012, 33 (04) : 259 - 264
  • [35] Structure, and luminescence properties in Tm3+/Yb3+ co-doped bismuth-tellurite glass for 2 μm fiber lasers
    Song, Chunlai
    Xu, Pengfei
    Zhou, Dechun
    Mo, Haoyun
    Qi, Kaifa
    Zhong, Xinru
    Wu, Yuxiao
    Cao, Jilong
    Han, Kexuan
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2022, 593
  • [36] Upconversion luminescence in Tm3+/Yb3+ co-doped lead tungstate tellurite glasses
    Babu, A. Mohan
    Jamalaiah, B. C.
    Chengaiah, T.
    Reddy, G. V. Lokeswara
    Moorthy, L. Rama
    PHYSICA B-CONDENSED MATTER, 2011, 406 (15-16) : 3074 - 3078
  • [37] Red to blue up-conversion emission of Tm3+ ions in Yb3+-doped glass ceramic
    Xu, Wu, 1600, American Inst of Physics, Woodbury, NY, United States (75):
  • [38] 1.47 μm Tm3+:: ZBLAN fibre laser pumped at 1.064 μm
    El-Agmy, RM
    Lüthy, W
    Graf, T
    Weber, HP
    ELECTRONICS LETTERS, 2003, 39 (06) : 507 - 508
  • [39] FLUORESCENCE MECHANISMS AND DYNAMICS OF TM3+ SINGLY DOPED AND YB3+, TM3+ DOUBLY DOPED GLASSES
    ZOU, XL
    IZUMITANI, T
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 1993, 162 (1-2) : 58 - 67
  • [40] Tm3+ and Tm3+-Ho3+co-doped tungsten tellurite glass single mode fiber laser
    Li, Kefeng
    Zhang, Guang
    Wang, Xin
    Hu, Lili
    Kuan, Peiwen
    Chen, Danping
    Wang, Meng
    OPTICS EXPRESS, 2012, 20 (09): : 10115 - 10121