Development, manufacturing and lasing behavior of Yb-doped ultra large mode area fibers based on Yb-doped fused bulk silica

被引:14
|
作者
Langner, Andreas [1 ]
Such, Mario [1 ]
Schoetz, Gerhard [1 ]
Reichel, Volker [2 ]
Grimm, Stephan [2 ]
Just, Florian [2 ]
Leich, Martin [2 ]
Kirchhof, Johannes [2 ]
Wedel, Bjoern [3 ]
Koehler, Gunnar [3 ]
Strauch, Olaf [3 ]
Mehl, Oliver [3 ]
Krause, Volker [4 ]
Rehmann, Georg [4 ]
机构
[1] Heraeus Quarzglas GmbH & Co KG, Quarzstr 8, D-63450 Hanau, Germany
[2] Inst Photon Technol, D-07745 Jena, Germany
[3] HIGHYAG Lasertechnol GmbH, D-14532 Stahnsdorf, Germany
[4] Laserline GmbH, D-65218 Mulheim, Germany
关键词
Rare earth doped silica; Yb-doping; active large core fiber; end-pumped fiber laser;
D O I
10.1117/12.845761
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
At the Photonics West 2008 we presented our rare earth doped fused bulk silica for fiber laser applications [1]. This approach overcame the typical geometrical limitations of other well known production methods for rare earth doped silica materials. Our unique production technique is based on the sintering of Yb-doped granulates of high-purity SiO2 particles. We have processed our Yb-doped bulk silica rods into ultra large mode area (XLMA) multi-mode double cladding laser fibers with an active core diameter in the range of 40 mu m to 100 mu m (depending on the core doping level). In the XLMA fiber the active core is surrounded by a so-called 2D- or 4D-shaped pure silica pump cladding (with diameter between 850 mu m and 900 mu m) and an F-doped outer silica cladding with an outer diameter of 1000 mu m. We have investigated the refractive index and the intrinsic stress profiles of different XLMA laser fibers and their preforms to visualize interface effects. The fiber cross section designs, the quality of all interfaces and the material composition are important factors for the laser fiber performance. The laser properties of these fibers have been investigated in detail. In addition, the preparation of the fiber end-face is important to reduce heat effects and we have developed concepts to mitigate such thermal load at the fiber end face.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Passively mode-locked laser based on an ultra-large dispersion Yb-doped fiber
    Lecaplain, C.
    Wang, H.
    Qian, K.
    Fevrier, S.
    Hideur, A.
    [J]. 2013 CONFERENCE ON LASERS AND ELECTRO-OPTICS EUROPE AND INTERNATIONAL QUANTUM ELECTRONICS CONFERENCE (CLEO EUROPE/IQEC), 2013,
  • [22] Photodarkening and Photobleaching of Yb-doped Fibers by Laser Diodes
    Inoue, Noriyuki
    Shirakawa, Akira
    Ueda, Ken-ichi
    [J]. 2010 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO) AND QUANTUM ELECTRONICS AND LASER SCIENCE CONFERENCE (QELS), 2010,
  • [23] On the origin of photodarkening resistance in Yb-doped silica fibers with high aluminum concentration
    Engholm, Magnus
    Tuggle, Matthew
    Kucera, Courtney
    Hawkins, Thomas
    Dragic, Peter
    Ballato, John
    [J]. OPTICAL MATERIALS EXPRESS, 2021, 11 (01) : 115 - 126
  • [24] Pump Wavelength Dependence of Photodarkening in Yb-Doped Fibers
    Li, Huizi
    Zhang, Liling
    Sidharthan, Raghuraman
    Ho, Daryl
    Wu, Xuan
    Venkatram, Nalla
    Sun, Handong
    Huang, Tianye
    Yoo, Seongwoo
    [J]. JOURNAL OF LIGHTWAVE TECHNOLOGY, 2017, 35 (13) : 2535 - 2540
  • [25] Highly efficient Yb-doped silica fibers prepared by powder sinter technology
    Leich, Martin
    Just, Florian
    Langner, Andreas
    Such, Mario
    Schoetz, Gerhard
    Eschrich, Tina
    Grimm, Stephan
    [J]. OPTICS LETTERS, 2011, 36 (09) : 1557 - 1559
  • [26] Laser cooling experiments to measure the quantum efficiency of Yb-doped silica fibers
    Topper, Brian
    Neumann, Alexander
    Albrecht, Alexander R.
    Flores, Angel S.
    Kuhn, Stefan
    Haessner, Denny
    Hein, Sigrun
    Hupel, Christian
    Nold, Johannes
    Haarlammert, Nicoletta
    Schreiber, Thomas
    Sheik-Bahae, Mansoor
    Mafi, Arash
    [J]. OPTICS LETTERS, 2022, 47 (14) : 3608 - 3611
  • [27] Photodarkening in Yb-doped silica fibers: influence of the atmosphere during preform collapsing
    Jetschke, S.
    Unger, S.
    Schwuchow, A.
    Leich, M.
    Reichel, V.
    Kirchhof, J.
    [J]. FIBER LASERS V: TECHNOLOGY, SYSTEMS, AND APPLICATIONS, 2008, 6873 : U286 - U295
  • [28] Passively mode-locked Yb-doped large-mode-area microstruture fiber laser
    Lecaplain, C.
    Ortac, B.
    Hideur, A.
    Martel, Gilles
    Limpert, J.
    Tuennermann, A.
    [J]. 2008 CONFERENCE ON LASERS AND ELECTRO-OPTICS & QUANTUM ELECTRONICS AND LASER SCIENCE CONFERENCE, VOLS 1-9, 2008, : 1525 - +
  • [29] 11.2 dB SBS gain suppression in a large mode area Yb-doped optical fiber
    Mermelstein, M. D.
    Andrejeo, M. J.
    Fini, J.
    Yablon, A.
    Headley, C.
    DiGiovanni, D. J.
    McCurdy, A. H.
    [J]. FIBER LASERS V: TECHNOLOGY, SYSTEMS, AND APPLICATIONS, 2008, 6873
  • [30] Mode-selective amplification in a large mode area Yb-doped fiber using a photonic lantern
    Wittek, S.
    Ramirez, R. Bustos
    Zacarias, J. Alvarado
    Eznaveh, Z. Sanjabi
    Bradford, J.
    Galmiche, G. Lopez
    Zhang, D.
    Zhu, W.
    Antonio-Lopez, J.
    Shah, L.
    Correa, R. Amezcua
    [J]. OPTICS LETTERS, 2016, 41 (10) : 2157 - 2160