• DocumentCode
    1756317
  • Title

    Polymer-Waveguide-Based Optical Circuit With Two Vertical-Transition Output Ports Realized on Silicon Substrate for Optical Interconnects

  • Author

    Mount-Learn Wu ; Chin-Ta Chen ; Po-Kuan Shen ; Tien-Yu Huang ; Chia-Chi Chang ; Hsu-Liang Hsiao ; Teng-Zhang Zhu ; Hsiao-Chin Lan ; Yun-Chih Lee ; Yo-Shen Lin

  • Author_Institution
    Dept. of Opt. & Photonics, Nat. Central Univ., Jhongli, Taiwan
  • Volume
    5
  • Issue
    3
  • fYear
    2013
  • fDate
    41426
  • Firstpage
    7901108
  • Lastpage
    7901108
  • Abstract
    A polymer-waveguide-based optical circuit with two vertical-transition output ports for the optical interconnects is demonstrated on a silicon substrate. Such a 1 × 2 vertical splitter is realized using a polymer waveguide monolithically integrated with three silicon 45° microreflectors. The vertical-cavity surface-emitting laser chip assembled at the input port and two multimode fibers located at two output ports are arranged to demonstrate a two-port optical proximity coupling of the off-chip optical interconnects based on the proposed splitter. The optical insertion loss of -6.6 dB is experimentally obtained for the proposed 1 × 2 vertical splitter with a splitting ratio of 1.3 : 1. The clearly 10-Gb/s optical eye patterns at both output ports verify that the 1 × 2 vertical splitter is suitable for the optical interconnects with multiple output ports.
  • Keywords
    micromirrors; optical beam splitters; optical interconnections; optical losses; optical planar waveguides; optical polymers; silicon; surface emitting lasers; Si; bit rate 10 Gbit/s; multimode fibers; off-chip optical interconnects; optical eye patterns; optical insertion loss; optical interconnects; polymer-waveguide-based optical circuit; silicon 45° microreflectors; silicon substrate; splitting ratio; two-port optical proximity coupling; vertical splitter; vertical-cavity surface-emitting laser chip; vertical-transition output ports; Optical fibers; Optical interconnections; Optical reflection; Polymers; Silicon; Optical waveguides; micromirrors; optical interconnection; silicon substrate;
  • fLanguage
    English
  • Journal_Title
    Photonics Journal, IEEE
  • Publisher
    ieee
  • ISSN
    1943-0655
  • Type

    jour

  • DOI
    10.1109/JPHOT.2013.2264662
  • Filename
    6524157