Demonstration of Compact and Low-Loss Athermal Arrayed-Waveguide Grating Module Based on 2.5%-Δ Silica-Based Waveguides

被引:4
|
作者
Maru, Koichi [1 ]
Abe, Yukio [1 ]
Uetsuka, Hisato [2 ]
机构
[1] Hitachi Cable Ltd, Informat Syst Prod Div, Hitachi, Ibaraki 3191418, Japan
[2] Hitachi Cable Ltd, Elect R&D Ctr, Hitachi, Ibaraki 3191414, Japan
关键词
integrated optics devices; wavelength filtering devices; arrayed waveguide gratings; planar lightwave circuits; silica waveguides;
D O I
10.1143/JJAP.47.7903
中图分类号
O59 [应用物理学];
学科分类号
摘要
We demonstrated a compact and low-loss athermal arrayed-waveguide grating (AWG) module utilizing silica-based planar lightwave circuit (PLC) technology. Spot-size converters based on a vertical ridge-waveguide taper were integrated with a 2.5%-Delta athermal AWG to reduce the loss at chip-to-fiber interface. Spot-size converters based on a segmented core were formed around resin-filled trenches for athermalization formed in the slab to reduce the diffraction loss at the trenches. A 16-channel athermal AWG module with 100-GHz channel spacing was fabricated. The use of a 2.5%-Delta athermal chip with a single-side fiber array enabled a compact package of the size of 41.6 x 16.6 x 4.5 mm(3). Athermal characteristics and a small insertion loss of 3.5-3.8 dB were obtained by virtue of low fiber-to-chip coupling loss and athermalization with low excess loss. [DOI: 10.1143/JJAP.47.7903]
引用
收藏
页码:7903 / 7908
页数:6
相关论文
共 50 条
  • [21] Silica-based 71-channel arrayed waveguide grating
    An Jun-ming
    Wu Yuan-da
    Li Jian-guang
    Wang Hong-jie
    Hu Xiong-wei
    OPTOELECTRONICS LETTERS, 2006, 2 (04) : 256 - 258
  • [22] Compact and low-loss arrayed waveguide grating module with tolerance-relaxed spot-size converter
    Mizuno, T
    Kitoh, T
    Ishii, M
    Inoue, Y
    Saida, T
    Itoh, M
    Shibata, T
    Hibino, Y
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2003, 15 (02) : 239 - 241
  • [23] Reducing the thermal dependence of silica-based arrayed-waveguide grating using inorganic-organic hybrid materials
    Kang, ES
    Kim, WS
    Kim, DJ
    Bae, BS
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2004, 16 (12) : 2625 - 2627
  • [24] Low-loss arrayed-waveguide grating with high index regions at slab-to-array interface
    Maru, K
    Chiba, T
    Okawa, M
    Ishikawa, H
    Ohira, K
    Sato, S
    Uetsuka, H
    ELECTRONICS LETTERS, 2001, 37 (21) : 1287 - 1289
  • [25] Low-loss arrayed waveguide grating at 760 nm
    Stanton, E. J.
    Spott, A.
    Davenport, M. L.
    Volet, N.
    Bowers, J. E.
    OPTICS LETTERS, 2016, 41 (08) : 1785 - 1788
  • [26] Low-loss arrayed waveguide grating at 2.0 μm
    Stanton, Eric J.
    Volet, Nicolas
    Bowers, John E.
    2017 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2017,
  • [27] Design and fabrication of 8 × 8 silica-based arrayed waveguide grating
    Li, Guang-Bo
    Long, Wen-Hua
    Jia, Ke-Miao
    Tang, Yan-Zhe
    Wu, Ya-Ming
    Yang, Jian-Yi
    Wang, Yue-Lin
    Guangdianzi Jiguang/Journal of Optoelectronics Laser, 2006, 17 (03): : 269 - 273
  • [28] Experimental Demonstration of Birefringence Compensation Using Angled Star Couplers in Silica-Based Arrayed Waveguide Grating
    Xia, Xiang
    Zou, Jun
    Lang, Tingting
    He, Jian-Jun
    IEEE PHOTONICS JOURNAL, 2012, 4 (06): : 2236 - 2242
  • [29] Fabrication of low-loss and polarisation-insensitive 256 channel arrayed-waveguide grating with 25 GHz spacing using 1.5% Δ waveguides
    Hida, Y
    Hibino, Y
    Itoh, M
    Sugita, A
    Himeno, A
    Ohmori, Y
    ELECTRONICS LETTERS, 2000, 36 (09) : 820 - 821
  • [30] Compact and low-loss interleave filter employing lattice-form structure and silica-based waveguide
    Oguma, M
    Kitoh, T
    Inoue, Y
    Mizuno, T
    Shibata, T
    Kohtoku, M
    Hibino, Y
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2004, 22 (03) : 895 - 902