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Effects of the ZnSe concentration on the structural and optical properties of ZnSe/PVA nanocomposite thin film
Authors:M. Halajan  M.J. Torkamany  D. Dorranian
Affiliation:1. Plasma Physics Research Center, Science and Research Branch, Islamic Azad University, P.O. Box. 14665-576 Tehran, Iran;2. Iranian National Centre for Laser Science and Technology (INLC), P.O. Box. 14665-576, Tehran, Iran
Abstract:This study investigated the effects of ZnSe nanoparticles (NPs) on the structural and (linear and nonlinear) optical properties of polyvinyl alcohol (PVA) thin film. Three samples of ZnSe NP-doped PVA thin films with different concentrations of ZnSe were produced on a glass substrate. The ZnSe NPs were synthesized by pulsed laser ablation of the ZnSe bulk target immersed in distilled water using a 1064 nm wavelength and a high frequency pulsed Nd:YAG laser. The optical bandgap energies of the films were extracted from their UV-Vis-NIR absorption spectra. The corresponding energy bandgaps of the nanocomposite films declined as the ZnSe NPs doping concentration increased. X-ray diffraction analysis was used to characterize the crystalline phases of the ZnSe/PVA nanocomposite films. The concentration-dependent nonlinear optical absorption and nonlinear refraction behaviors of the films after exposure to 532-nm nanosecond laser pulses were investigated using the Z-scan technique. The nonlinear absorption response of the films was positive when measured using an open aperture scheme, which was attributed to the two-photon absorption mechanism. In addition, the nonlinear refraction indices had a negative value and they increased as the concentration of ZnSe NPs in the films increased.
Keywords:Laser ablation   Nanocomposite   Nonlinear optical properties   ZnSe/PVA film   Z-scan
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