Large Effective Mode Area Optical Fibers for High Power Lasers

被引:11
|
作者
Dong, Liang [1 ]
Li, Jun [1 ]
McKay, Hugh A. [1 ]
Fu, Libin [1 ]
Thomas, Brian K. [1 ]
机构
[1] IMRA Amer Inc, Ann Arbor, MI 48105 USA
关键词
optical fibers; optical fiber amplifiers; optical fiber lasers;
D O I
10.1117/12.806609
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Leakage channel fibers have demonstrated their ability to significantly extend the effective mode area of a fundamental mode while maintaining robust single mode operation. These fibers are designed to have strong built-in mode filtering which effectively suppresses the propagation of all higher order modes while keeping fundamental mode loss to a minimum, and, therefore, effectively extending the regime of single mode operation. Recently all-glass leakage channel fibers have been demonstrated as a significant improvement over designs with air holes. These all glass leakage channel fibers not only can be manufactured with much improved consistence and uniformity. They can also be handled and used as conventional fibers. More importantly, mode distortions from collapse of air holes in photonic crystal fibers during splicing and other end face treatments are largely eliminated. We will review some of the recent progress in this area.
引用
收藏
页数:8
相关论文
共 50 条
  • [31] High power modal instability measurements of very large mode area (VLMA) step index fibers
    Engin, Doruk
    Lu, Wei
    Verdun, Horacio
    Gupta, Shantanu
    LASER TECHNOLOGY FOR DEFENSE AND SECURITY IX, 2013, 8733
  • [32] High Absorption Low NA Step Index Large-Mode-Area Fiber for High Power Ultrafast Lasers
    Sidharthan, R.
    Lim, K. J.
    Lim, S. H.
    Li, H.
    Zhou, Y.
    Ji, J.
    Seng, Y. M.
    Chua, S. L.
    Yoo, S.
    2019 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2019,
  • [33] Power scaling in passively mode-locked large-mode area fiber lasers
    Univ of Southampton, Southampton, United Kingdom
    IEEE Photonics Technol Lett, 12 (1718-1720):
  • [34] Power scaling in passively mode-locked large-mode area fiber lasers
    Broderick, NGR
    Offerhaus, HL
    Richardson, DJ
    Sammut, RA
    IEEE PHOTONICS TECHNOLOGY LETTERS, 1998, 10 (12) : 1718 - 1720
  • [35] Improved optical fibers for enhanced coupling with high power diode lasers
    Skutnik, BJ
    Foley, B
    HIGH-POWER DIODE LASER TECHNOLOGY AND APPLICATIONS II, 2004, 5336 : 65 - 70
  • [36] Design optimization of Tm-doped large-mode area fibers for power scaling of 2μm lasers and amplifiers
    Jollivet, C.
    Farley, K.
    Conroy, M.
    Dabhi, H.
    Edgecumbe, J.
    Carter, A.
    Tankala, K.
    FIBER LASERS XIV: TECHNOLOGY AND SYSTEMS, 2017, 10083
  • [37] Dispersion Flattened Single Mode Optical Fiber with Large Effective Area
    Babita
    Rastogi, Vipul
    PROCEEDING OF INTERNATIONAL CONFERENCE ON RECENT TRENDS IN APPLIED PHYSICS & MATERIAL SCIENCE (RAM 2013), 2013, 1536 : 729 - 730
  • [38] Theoretical design of a large effective mode area microstructure optical fiber
    Razzak, S. M. Abdur
    Namihira, Yoshinori
    OPTICA APPLICATA, 2010, 40 (03) : 677 - 683
  • [39] Comparison of high power large mode area and single mode 1908nm Tm-doped fiber lasers
    Johnson, Benjamin R.
    Creeden, Daniel
    Limongelli, Julia
    Pretorius, Herman
    Blanchard, Jon
    Setzler, Scott D.
    FIBER LASERS XIII: TECHNOLOGY, SYSTEMS, AND APPLICATIONS, 2016, 9728
  • [40] High-order modes suppression in large-mode-area fiber amplifiers and lasers by controlling the mode power allocations
    Gong, Mali
    Liao, Suying
    Yuan, Yanyang
    Zhang, Haitao
    JOURNAL OF OPTICS A-PURE AND APPLIED OPTICS, 2009, 11 (01):