Side-Coupling Scheme for a High-Power Laser Diode Array With Grating Couplers: Thermal and Geometrical Issues

被引:3
|
作者
Huang, Chieh-Wei [1 ]
Chang, Chun-Lin [1 ]
Kuan, Chieh-Hsiung [1 ]
Huang, Sheng-Lung [1 ]
Huang, Ding-Wei [1 ]
机构
[1] Natl Taiwan Univ, Grad Inst Photon & Optoelect, Taipei 10617, Taiwan
关键词
Diode laser arrays; gratings; grating coupler; FIBER LASERS;
D O I
10.1109/JLT.2012.2189354
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Grating couplers for side coupling of the light from a high-power laser diode array (LDA) into the inner cladding of a double-clad fiber were studied theoretically and implemented experimentally. In the experiments, two types of grating couplers were designed and fabricated: a gold-coated surface relief grating coupler and a gold-embedded silica grating coupler. A suitable design for heat dissipation for each grating coupler was employed to minimize thermal expansion due to the heat accumulated from the light absorption by the metal part of the grating coupler. The experimental results show that the gold-embedded silica grating coupler is superior to the surface relief gold grating coupler, because of its higher resistance to thermal expansion and better heat removal capability. In addition, the grating pitch and groove width were optimized for the highest overall coupling efficiency by taking account the backward diffraction loss and the groove wall non-verticality due to fabrication distortion. The experimental results show that the gold-embedded silica grating coupler is capable of coupling light power up to 21 W from a 976-nm continuous-wave LDA into the inner cladding of a 400-mu m-diameter double-clad fiber with an overall coupling efficiency of 50%.
引用
收藏
页码:1743 / 1749
页数:7
相关论文
共 50 条
  • [31] Transient thermal modeling of high-power pulsed laser diode arrays
    Carter, J
    Snyder, D
    Reichenbaugh, J
    NINETEENTH ANNUAL IEEE SEMICONDUCTOR THERMAL MEASUREMENT AND MANAGEMENT SYMPOSIUM, 2003, : 276 - 283
  • [32] High-power operation of a wide-striped InGaN laser diode array
    Samonji, Katsuya
    Yoshida, Shinji
    Hagino, Hiroyuki
    Yamanaka, Kazuhiko
    Takigawa, Shinichi
    NOVEL IN-PLANE SEMICONDUCTOR LASERS XI, 2012, 8277
  • [33] Fiber coupling of high-power diode laser stack for direct polycarbonate processing
    Vidal, E.
    Quintana, I.
    Azkorbebeitia, U.
    Mendez, E.
    Viera, G.
    Galan, M.
    Otaduy, D.
    HIGH-POWER DIODE LASER TECHNOLOGY AND APPLICATIONS VIII, 2010, 7583
  • [34] High power laser diode array side-pumped Nd:YAG slab laser
    Zhou, Fuzheng
    Chen, Youming
    Hu, Wentao
    Fan, Dianyuan
    Wang, Zhijiang
    Zhongguo Jiguang/Chinese Journal of Lasers, 1994, 21 (11): : 865 - 868
  • [35] High-duty cycle, high-power linear array diode laser packaging technique
    Tang, Chun
    Wu, Deyong
    Yan, Diyong
    Yang, Senlin
    Shao, Yingbin
    Yang, Chenglong
    2000, Nuclear Society of China, China (12):
  • [36] Beam collimation of high-power laser diode array with graded-index fiber lens array
    Tang, Yu-Long
    Niu, Jin-Fu
    Yang, Yong
    Xu, Jian-Qiu
    OPTICAL ENGINEERING, 2008, 47 (05)
  • [37] HIGH-POWER ALGALNP 3-RIDGE TYPE LASER DIODE-ARRAY
    VALSTER, A
    ANDRE, JP
    DUPONTNIVET, E
    MARTIN, GM
    ELECTRONICS LETTERS, 1988, 24 (06) : 326 - 327
  • [38] Amplified luminescence and output characteristics of high-power InGaAs/AlGaAs laser diode array
    Kabanov, V. V.
    Lebiadok, Y. V.
    Ramanenka, A. A.
    Ryabtsev, A. G.
    Ryabtsev, G. I.
    Shchemelev, M. A.
    Mehta, S. K.
    QUANTUM ELECTRONICS, 2011, 41 (02) : 95 - 98
  • [39] HIGH-POWER CW OPERATION OF ALGAINP LASER-DIODE ARRAY OF 640 NM
    SKIDMORE, JA
    EMANUEL, MA
    BEACH, RJ
    BENETT, WJ
    FREITAS, BL
    CARLSON, NW
    SOLARZ, RW
    BOUR, DP
    TREAT, DW
    IEEE PHOTONICS TECHNOLOGY LETTERS, 1995, 7 (02) : 133 - 135
  • [40] High-power laser diode array linewidth reduced by the external injection locking technique
    Buchta, Z.
    Rychnovsky, J.
    Lazar, J.
    LASER PHYSICS LETTERS, 2013, 10 (10)