• DocumentCode
    108095
  • Title

    Quantum-Dot Double Layer Polymer Waveguides by Evanescent Light Coupling

  • Author

    Gordillo, H. ; Suarez, I. ; Abargues, R. ; Rodriguez-Canto, P. ; Almuneau, G. ; Martinez-Pastor, J.P.

  • Author_Institution
    Inst. de Cienc. de los Mater., Univ. de Valencia, Valencia, Spain
  • Volume
    31
  • Issue
    15
  • fYear
    2013
  • fDate
    Aug.1, 2013
  • Firstpage
    2515
  • Lastpage
    2525
  • Abstract
    In this work we analyze numerically and experimentally new active waveguides based on a bilayer structure composed by a passive polymer and an active poly(mehtyl methacrylate) (PMMA) film doped with CdSe colloidal quantum dots (QDs), namely a nancomposite. In a first bilayer structure a planar PMMA layer is deposited on top of the nanocomposite, where the signal beam intensity is enhanced because this cladding layer is able to collect radiated emission of QDs. Moreover, the pump beam is also propagating through the cladding without limitation by QD absorption. These results are extended to a second bilayer structure, where ridge patterns of a commercially available resist (SU-8) are deposited on the top of the nanocomposite active layer. These SU-8 patterns are also able to guide with low absorption losses both pump and signal beams. The optimum geometrical parameters of the bilayer structures were properly designed to optimize the light waveguiding, previous to their fabrication and optical characterization. For this purpose, a spontaneous emission model has been developed and programmed into an active beam propagation method. This technology can be the base for developing integrated photonics on silicon at visible and telecom wavelengths.
  • Keywords
    II-VI semiconductors; cadmium compounds; colloids; nanocomposites; nanophotonics; numerical analysis; optical couplers; optical design techniques; optical planar waveguides; optical pumping; polymer films; semiconductor quantum dots; spontaneous emission; wide band gap semiconductors; CdSe; SU-8 patterns; absorption losses; active poly(mehtyl methacrylate) film; active waveguides; bilayer structure; cladding layer; colloidal quantum dots; evanescent light coupling; integrated photonics; nanocomposite; numerical analysis; optical characterization; optical design; optimum geometrical parameters; passive polymer; planar PMMA layer; pump beam; quantum-dot double layer polymer waveguides; ridge patterns; signal beam intensity; silicon; spontaneous emission model; telecom wavelengths; visible wavelengths; Absorption; Optical pumping; Optical waveguides; Photonics; Polymers; Refractive index; Colloidal Quantum Dots (QDs); SU-8 resist; electromagnetic propagation; evanescent coupling; nanocomposites; polymethylmethacrylate (PMMA);
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.2013.2268937
  • Filename
    6541952