• DocumentCode
    2241357
  • Title

    Low power and compact eight-channel reconfigurable optical add-drop multiplexers based on cascaded microring resonators

  • Author

    Tian, Y. Onghui ; Ji, Ruiqiang ; Zhang, Lei ; Ding, Jianfeng ; Chen, Hongtao ; Yang, Lin

  • Author_Institution
    State Key Lab. on Integrated Optoelectron., Inst. of Semicond., Beijing, China
  • fYear
    2011
  • fDate
    13-16 Nov. 2011
  • Firstpage
    1
  • Lastpage
    9
  • Abstract
    We report an eight-channel reconfigurable optical add-drop multiplexers (ROADMs) based on cascaded microring resonators with low tuning power and compact footprint. Microheaters are fabricated on the top of microring resonators, which can modulate microring resonators by the thermo-optic effect to achieve the reconfigurable functionality of the device. We demonstrate the reconfigurable add-drop multiplexing functionality for channel spacings of 100GHz and 50GHz, with the channel centre wavelengths aligned to International Telecommunication Unit (ITU) grid specifications. The crosstalk values for channel spacings of 100GHz and 50GHz are less than -22.5dB and -15.5dB, respectively. The average tuning power is about 4.854 mw/nm and the response speed is about 13.0 kHz.
  • Keywords
    channel spacing; micro-optomechanical devices; microfabrication; micromechanical resonators; multiplexing; multiplexing equipment; optical communication equipment; optical crosstalk; optical fabrication; optical modulation; optical resonators; optical tuning; thermo-optical effects; International Telecommunication Unit; ROADM; average tuning power; cascaded microring resonators; channel centre wavelengths; channel spacings; compact footprint; crosstalk values; lTU grid specifications; low power compact eight-channel reconfigurable optical add-drop multiplexers; microheaters; reconfigurable add-drop multiplexing functionality; response speed; thermo-optic effect; Abstracts; Heating; Optical modulation; Eight-channel reconfigurable optical add-drop multiplexers; Si nanowire; microring resonators; silicon-on-insulator; thermo-optic effect;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Communications and Photonics Conference and Exhibition, 2011. ACP. Asia
  • Conference_Location
    Shanghai
  • ISSN
    2162-108X
  • Print_ISBN
    978-0-8194-8961-6
  • Type

    conf

  • DOI
    10.1117/12.904280
  • Filename
    6210593