Linear and nonlinear optical characteristics of ZnO-SiO_2 nanocomposites
Author(s) -
Litty Irimpan,
Bindu Krishnan,
V. P. N. Nampoori,
P. Radhakrishnan
Publication year - 2008
Publication title -
applied optics
Language(s) - English
Resource type - Journals
ISSN - 0003-6935
DOI - 10.1364/ao.47.004345
Subject(s) - nanocomposite , materials science , absorption (acoustics) , nonlinear optics , refractive index , ultraviolet , nonlinear system , exciton , optics , oscillator strength , scattering , z scan technique , optoelectronics , molecular physics , composite material , laser , condensed matter physics , spectral line , chemistry , physics , quantum mechanics , astronomy
We present the spectral and nonlinear optical properties of ZnO-SiO2 nanocomposites prepared by colloidal chemical synthesis. Obvious enhancement of ultraviolet (UV) emission of the samples is observed, and the strongest UV emission of a typical ZnO-SiO2 nanocomposite is over three times stronger than that of pure ZnO. The nonlinearity of the silica colloid is low, and its nonlinear response can be improved by making composites with ZnO. These nanocomposites show self-defocusing nonlinearity and good nonlinear absorption behavior. The observed nonlinear absorption is explained through two photon absorption followed by weak free carrier absorption and nonlinear scattering. The nonlinear refractive index and the nonlinear absorption increase with increasing ZnO volume fraction and can be attributed to the enhancement of exciton oscillator strength. ZnO-SiO2 is a potential nanocomposite material for the UV light emission and for the development of nonlinear optical devices with a relatively small limiting threshold.
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