Laser beam shaping and mode conversion in optical fibers

被引:23
|
作者
Mayeh M. [1 ]
Farahi F. [1 ,2 ]
机构
[1] Center for Optoelectronics and Optical Communications, University of North Carolina at Charlotte, Department of Physics and Optical Science, Charlotte, NC 28223
[2] Department of Physics and Optical Science, University of North Carolina at Charlotte, Charlotte, NC 28223
关键词
Fiber beam shaping; fiber mode conversion; laser beam shaping;
D O I
10.1007/s13320-011-0028-1
中图分类号
学科分类号
摘要
A new class of all-fiber beam shaping devices has been realized by inverse etching the end face of single mode and multimode fibers to form a concave cone tip. Concave tip fiber can convert a Gaussian beam profile to a flat top beam profile with a uniform intensity distribution. A flat top beam with intensity variation of approx. 5% and flat top diameter to spot diameter ratio of 67% has been achieved. This device can also change the beam shape from a Gaussian to a donut by moving the observation plane. A flat top multimode fiber beam delivery is attractive for applications which require high power and uniform intensity distribution. In single mode fiber, concave tips could be used to reduce the beam spot size diameter, enabling efficient light coupling from a single mode fiber to an integrated optical waveguide. © 2011 University of Electronic Science and Technology of China and Springer-Verlag Berlin Heidelberg.
引用
收藏
页码:187 / 198
页数:11
相关论文
共 50 条
  • [11] Design of GRIN laser beam shaping system
    Shealy, DL
    Chao, SH
    LASER BEAM SHAPING V, 2004, 5525 : 138 - 147
  • [12] Comparison and Evaluation of Laser Beam Shaping Techniques
    Barcik, Peter
    Hudcova, Lucie
    Wilfert, Otakar
    Arce-Diego, Jose Luis
    Fanjul-Velez, Felix
    Salas-Garcia, Irene
    Ortega-Quijano, Noe
    LASER COMMUNICATION AND PROPAGATION THROUGH THE ATMOSPHERE AND OCEANS II, 2013, 8874
  • [13] A new superresolving design for laser beam shaping
    Zhou, SM
    Zhou, CH
    Optical Design and Testing II, Pts 1 and 2, 2005, 5638 : 505 - 512
  • [14] Linear quadratic regulator for laser beam shaping
    Escarate, Pedro
    Aguero, Juan C.
    Zuniga, Sebastian
    Castro, Mario
    Garces, Javier
    OPTICS AND LASERS IN ENGINEERING, 2017, 94 : 90 - 96
  • [15] Wavelength-independent laser beam shaping
    Degama, Mapule P.
    Forbes, Andrew
    LASER BEAM SHAPING XI, 2010, 7789
  • [16] Non-paraxial laser beam shaping
    Schimmel, H
    Wyrowski, F
    PHOTON MANAGEMENT, 2004, 5456 : 157 - 166
  • [17] Liquid Crystal Pancharatnam-Berry Micro-Optical Elements for Laser Beam Shaping
    Jiang, Miao
    Yu, Hao
    Feng, Xiayu
    Guo, Yubing
    Chaganava, Irakli
    Turiv, Taras
    Lavrentovich, Oleg D.
    Wei, Qi-Huo
    ADVANCED OPTICAL MATERIALS, 2018, 6 (23):
  • [18] The potential for optical beam shaping of UV laser sources for mass scale quarantine disinfection applications
    Lizotte, Todd
    LASER BEAM SHAPING XI, 2010, 7789
  • [19] Fiber Beam Shaping for Optical Nerve Stimulation
    Tozburun, Serhat
    Lagoda, Gwen A.
    Burnett, Arthur L.
    Farahi, Faramarz
    Fried, Nathaniel M.
    2011 IEEE PHOTONICS CONFERENCE (PHO), 2011, : 493 - +
  • [20] Diffractive optical elements for pitchfork beam shaping
    Zhang, Chong
    Quick, Nathaniel R.
    Kar, Aravinda
    OPTICAL ENGINEERING, 2009, 48 (07)