• DocumentCode
    1610427
  • Title

    Universality of Feigenbaum and dissipative microstructures for highly nonequilibrium nonlinear systems

  • Author

    Makin, V.S. ; Makin, R.S. ; Vorobyev, A.Y. ; Guo, Cunlei

  • Author_Institution
    Complex Testing of Opto-Electron. Devices, Res. Inst, St. Petersburg
  • fYear
    2007
  • Firstpage
    103
  • Lastpage
    108
  • Abstract
    The effect of steplike change of spatial period of resonant relief on the condensed matter surfaces and in the volume under the action of intense laser radiation was investigated. The effect was observed in wide range of laser radiation duration´s from continuous wave one to the femtosecond. The effect was observed for materials with different properties from dielectrics and semiconductors to metals. The physical cause of remnant structures formation is the interference of incident wave with excited by it surface electromagnetic modes and are in the frameworks of universal polaritonic model of matter damage. It is shown that the formation of remnant structures with two or three values of spatial multiple periods are in framework of universal polaritonic model of condensed matter damage. The interpretation of the micro- and nanostructures formation in system intense laser radiation interacted with solid state material and the regular structures formation was made based on mathematical model of Feigenbaum universality where the value proportional to the number of laser pulses is controlled (bifurcation) parameter.
  • Keywords
    bifurcation; laser beam effects; nanostructured materials; nonlinear systems; polaritons; surface electromagnetic waves; surface structure; Feigenbaum universality; bifurcation parameter; condensed matter surfaces; dielectrics; dissipative microstructures; incident wave interference; intense laser radiation; metals; nanostructures; nonequilibrium nonlinear systems; remnant structures; resonant relief; semiconductors; spatial period; surface electromagnetic modes; universal polaritonic model; Laser modes; Laser theory; Laser transitions; Microstructure; Nonlinear systems; Optical materials; Resonance; Semiconductor lasers; Solid lasers; Surface emitting lasers;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Days on Diffraction, 2007 International Conference
  • Conference_Location
    St. Petersburg
  • Print_ISBN
    5-9651-0118-X
  • Type

    conf

  • DOI
    10.1109/DD.2007.4531998
  • Filename
    4531998