• DocumentCode
    1051095
  • Title

    Manipulating Dispersive Wave Generation by Frequency Chirp in Photonic Crystal Fibers

  • Author

    Lei, Dajun ; Dong, Hui ; Wen, Shuangchun ; Yang, Hua

  • Author_Institution
    Key Lab. for Micro/Nano Optoelectron. Devices of Minist. of Educ., Hunan Univ., Changsha, China
  • Volume
    27
  • Issue
    20
  • fYear
    2009
  • Firstpage
    4501
  • Lastpage
    4507
  • Abstract
    We show, by numerically solving the extended nonlinear Schrodinger equation, that a notable efficient conversion of energy from the soliton to the dispersive waves (DWs) can be acquired in photonic crystal fibers with negative dispersion slopes, and the conversion efficiency can be manipulated by initial frequency chirp of the input soliton. For the higher order solitons, the positive chirp can speed up the DWs generation while the negative chirp will slow it down. For the fundamental solitons, however, both the positive and negative frequency chirps slow down the DWs generation. Further, we find that, for both fundamental and higher order solitons, the efficiency of energy transfer is decreased due to the eigenvalues which represent the ultimate soliton amplitudes are reduced for both positive and negative chirps, but this can be easily overcome by simply adding the fiber length.
  • Keywords
    Schrodinger equation; chirp modulation; eigenvalues and eigenfunctions; holey fibres; optical fibre dispersion; optical solitons; photonic crystals; dispersive wave generation; eigen values; energy transfer; frequency chirp; negative dispersion slope; nonlinear Schrodinger equation; optical soliton; photonic crystal fiber; Chirp; dispersive wave (DW); photonic crystal fibers;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.2009.2024434
  • Filename
    5061573