Nonlinear optical studies on 1,3-disubstituent chalcones doped polymer films

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Date

2009

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Elsevier

Abstract

We report the measurements of the third-order nonlinear optical properties of recently synthesized and characterized two different 1,3-disubstituent chalcones doped PMMA films, with the prospective of reaching a good compromise between processability and high nonlinear optical properties. The measurements were done using nanosecond Z-scan at 532 nm. The Z-scan spectra reveal a large negative nonlinear refraction coefficient n<inf>2</inf> of the order 10-11 esu and the molecular two photon absorption cross section is 10-46 cm4 s/photon. The doped films exhibit good optical power limiting property under nanosecond regime and the two photon absorption (TPA) is the dominating process leading to the nonlinear behavior. The improvement in the nonlinear properties has been observed when methylenedioxy group is replaced by dimethoxy group due to increase in conjugation length. The observed nonlinear parameters of chalcone derivatives doped PMMA film is comparable with stilbazolieum derivatives, a well-known class of optical materials for photonics and biophotonics applications, which suggests that, these moieties have potential for the application of all-optical limiting and switching devices. © 2008 Elsevier B.V. All rights reserved.

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Keywords

Luminescence of organic solids, Optical films, Optical properties, Photonics, Photons, Polymer films, Two photon processes, Non-linear parameters, Non-linear refraction, Nonlinear optical studies, Optical power limiting, Third order nonlinear optical properties, Two photon absorption, Two-photon absorption cross section, Z-scan, Nonlinear optics

Citation

Optical Materials, 2009, 31, 6, pp. 854-859

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