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N. Ashkenov, B. N. Mbenkum, C. Bundesmann, V. Riede, M. Lorenz, D. Spenmann and E. M. Kaidashev, “Infrared Dielectric Functions and Phonon Modes of High-Quality ZnO Film,” Journal of Applied Physics, Vol. 93, No. 1, 2003, pp. 126-133. Hdoi:10.1063/1.1526935H
has been cited by the following article:
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TITLE:
Three-Photon Absorption in Zno Film Using Ultra Short Pulse Laser
AUTHORS:
Raied K. Jamal, Mohammed T. Hussein, Abdulla M. Suhail
KEYWORDS:
Multiphoton Processes; ZnO Nanocrystalline; Nonlinear Optics
JOURNAL NAME:
Journal of Modern Physics,
Vol.3 No.8,
August
14,
2012
ABSTRACT: The three-photon absorption (3PA) in nanostructure wide-band gap ZnO semiconductor material is observed under high intensity femtosecond Titanium-Sapphire laser of 800 nm wavelength excitation. The ZnO film was prepared by chemical spray pyrolysis technique with substrate temperature of 400℃. The optical properties concerning the absorp-tion, transmission, reflection, Raman and the photoluminescence spectra are studied for the prepared film. The structure of the ZnO film was tested with the X-Ray diffraction and it was found to be a polycrystalline with recognized peaks oriented in (002), and (102). The measured of three photon absorption coefficient was found to be about 0.0166 cm3/Gwatt2, which is about five times higher than the bulk value. The fully computerized z-scan system was used to measure the nonlinear coefficients from the Gaussian fit of the transmitted laser incident.