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Effect Of Mechanical Deformations On Absorption Spectrum Of Metallic Films Of Nanometer Thickness

INTERNATIONAL CONFERENCE ON MICRO- AND NANO-ELECTRONICS 2018(2019)

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Abstract
Optical properties of silver nanofilms on its thickness and mechanical deformations in visible and infrared ranges are studied theoretically. The deformation of the film during its elongation leads to a rearrangement of the structure of a surface layer and the appearance of dislocations. It is shown that 9% elongation is crucial for the six monolayer silver film. Mechanical deformations change the electronic structure of atoms in a film, which leads to a significant change in their optical properties. Stretching of the film shifts the absorption peak to the long wavelength region and leads to a slight decrease in absorption. The effects are explained by the significant transformation of the electron structure of deformed silver nanofilms.
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Key words
DFT, silver ultrathin films, QSE, extinction coefficient, refractive index, PDOS, VASP, optical properties, CMD, mechanical deformations
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