Control of Glass–Metal Composite Optical Nonlinearity via Nanostructuring

被引:0
作者
O. V. Shustova
V. V. Zhurikhina
A. A. Lipovskii
Yu. P. Svirko
机构
[1] Peter the Great St. Petersburg Polytechnic University,Institute of Physics, Nanotechnology and Telecommunications
[2] St. Petersburg Academic University,Department of Physics and Technology of Nanostructures
[3] University of Eastern Finland,Institute of Photonics
来源
Plasmonics | 2016年 / 11卷
关键词
Metal nanoparticles; Glass; Nanocomposite; Optical nonlinearity; Diffraction gratings;
D O I
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中图分类号
学科分类号
摘要
We perform theoretical study of the nonlinear transmission and nonlinear diffraction in nanogratings etched at the surface of copper- and silver-based glass–metal composites. By assuming low metal concentration in the glass matrix, we employ Maxwell Garnett approach to obtain refractive index and absorption coefficient, while the optical nonlinearity of the composite is described using anharmonic oscillator model. We demonstrate that both nonlinear refraction and nonlinear absorption contribute to the light-induced transmittance of the nanostructured slab of the copper-based composite. In particular, in contrast to the silver-based composite, the nonlinear refraction modifies considerably the wavelength dependence of the light-induced transmission change in the copper copper-based composite.
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页码:581 / 585
页数:4
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