• DocumentCode
    2378773
  • Title

    Thermal stability of the dipole orientation in nonlinear optical guest-host, side-chain and cross-linked polymer electrets

  • Author

    Bauer, S. ; Ren, W. ; Bauer-Gogonea, S. ; Gerhard-Multhaupt, R. ; Liang, J. ; Zyss, J. ; Ahlheim, M. ; Stähelin, M. ; Zysset, B.

  • Author_Institution
    Heinrich-Hertz-Inst., Berlin, Germany
  • fYear
    1994
  • fDate
    7-9 Sep 1994
  • Firstpage
    800
  • Lastpage
    805
  • Abstract
    As the thermal stability of nonlinear optical polymer electrets is essential for their application in waveguide devices, three typical polymers were studied by means of isothermal pyroelectricity measurements and thermally stimulated depolarization experiments. The fundamental difference between the three sample materials is the connection between the polymer backbone and the nonlinear optical molecules: The guest-host polymer is just doped with chromophore molecules, in the side-chain material, the chromophore is chemically linked to the main-chain, and in the cross-linked system, chromophore movement is still further restricted. The numerical evaluation reveals how the isothermal relaxation deviates from an exponential decay, and the TSD results yield the product of activation energy and stretching parameter. The behavior of guest-host and side-chain polymers can be described by a single broad relaxation process, whereas cross-linking yields a rigid dipole polymer network with a high activation temperature of the dipole orientation
  • Keywords
    dielectric depolarisation; dielectric relaxation; electrets; filled polymers; nonlinear optics; optical polymers; organic insulating materials; pyroelectricity; thermal stability; thermally stimulated currents; activation energy; activation temperature; chromophore molecules; cross-linked polymer; dipole orientation; isothermal pyroelectricity; isothermal relaxation; nonlinear optical guest-host polymer electrets; rigid dipole polymer network; side-chain polymer; stretching parameter; thermal stability; thermally stimulated depolarization; waveguide devices; Electrets; Isothermal processes; Nonlinear optical devices; Nonlinear optics; Optical materials; Optical polymers; Optical waveguides; Pyroelectricity; Stimulated emission; Thermal stability;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electrets, 1994. (ISE 8), 8th International Symposium on
  • Conference_Location
    Paris
  • Print_ISBN
    0-7803-1940-0
  • Type

    conf

  • DOI
    10.1109/ISE.1994.515230
  • Filename
    515230