• DocumentCode
    10132
  • Title

    Demonstration of Multi-Casting in a 1 × 9 LCOS Wavelength Selective Switch

  • Author

    Robertson, Brian ; Haining Yang ; Redmond, Maura M. ; Collings, N. ; Moore, John R. ; Jinsong Liu ; Jeziorska-Chapman, Anna M. ; Pivnenko, Mike ; Lee, Sang-Rim ; Wonfor, Adrian ; White, Ian H. ; Crossland, W.A. ; Chu, D.P.

  • Author_Institution
    Dept. of Eng.,Photonics & Sensors Group, Univ. of Cambridge, Cambridge, UK
  • Volume
    32
  • Issue
    3
  • fYear
    2014
  • fDate
    Feb.1, 2014
  • Firstpage
    402
  • Lastpage
    410
  • Abstract
    A multi-functional 1 × 9 wavelength selective switch based on liquid crystal on silicon (LCOS) spatial light modulator technology and anamorphic optics was tested at a channel spacing of 100 and 200 GHz, including dynamic data measurements on both single beam deflection and multi-casting to two ports. The multi-casting holograms were optimized using a modified Gerchberg-Saxton routine to design the core hologram, followed by a simulated annealing routine to reduce crosstalk at non-switched ports. The effect of clamping the magnitude of phase changes between neighboring pixels during optimization was investigated, with experimental results for multi-casting to two ports resulting in a signal insertion loss of -7.6 dB normalized to single port deflection, a uniformity of ±0.6%, and a worst case crosstalk of -19.4 dB, which can all be improved further by using a better anti-reflection coating on the LCOS SLM coverplate and other measures.
  • Keywords
    antireflection coatings; channel spacing; holography; integrated optoelectronics; liquid crystal on silicon; multicast communication; optical communication equipment; optical crosstalk; optical design techniques; optical losses; optical switches; simulated annealing; spatial light modulators; Gerchberg-Saxton routine; LCOS SLM coverplate; LCOS wavelength selective switch; Si; anamorphic optics; antireflection coating; channel spacing; clamping; core hologram; dynamic data measurements; frequency 100 GHz to 200 GHz; liquid crystal on silicon spatial light modulator; multicasting holograms; nonswitched ports; optimization; phase changes; signal insertion loss; simulated annealing; single beam deflection; single port deflection; worst case crosstalk; Algorithm design and analysis; Crosstalk; Insertion loss; Liquid crystal on silicon; Multicast communication; Optical switches; Optimization; Multi-casting; optical fiber communication; wavelength division multiplexing; wavelength selective switch;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.2013.2293919
  • Filename
    6678587