Modelling optical polarization processes on laser modified titanium with a polyvinyl alcohol film

The article presents the results of research of optical spectra of surface plasmon polaritons on laser modified titanium with a deposited micron polymer polyvinyl alcohol (PVA) film. The metasurface of titanium was created by means of femtosecond laser treatment with l = 1.035 µ and the...

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Main Authors: Anna V. Tsibulnikova, Artemii A. Khankaev, Dmitry A. Artamonov, Ilya G. Samusev, Vasily A. Slezhkin, Ivan I. Lyatun, Valery V. Bryukhanov
Format: Article
Language:English
Published: Voronezh State University 2022-12-01
Series:Конденсированные среды и межфазные границы
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Online Access:https://journals.vsu.ru/kcmf/article/view/10559
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author Anna V. Tsibulnikova
Artemii A. Khankaev
Dmitry A. Artamonov
Ilya G. Samusev
Vasily A. Slezhkin
Ivan I. Lyatun
Valery V. Bryukhanov
author_facet Anna V. Tsibulnikova
Artemii A. Khankaev
Dmitry A. Artamonov
Ilya G. Samusev
Vasily A. Slezhkin
Ivan I. Lyatun
Valery V. Bryukhanov
author_sort Anna V. Tsibulnikova
collection DOAJ
description The article presents the results of research of optical spectra of surface plasmon polaritons on laser modified titanium with a deposited micron polymer polyvinyl alcohol (PVA) film. The metasurface of titanium was created by means of femtosecond laser treatment with l = 1.035 µ and the duration t = 280 fs with linear and circular radiation polarization. Sets of laser pulses were applied pointwise to the surface with a step of 100 μm with the interval ti = 25–750 ms. In the case of linear radiation polarization, tracks of ripple structures with a line density of up to N ~ 1,200 mm–1 appeared on the scribed titanium surface. It was found that when titanium is exposed to circular polarization radiation, occasional ablation cavities with lobed circular ripple nano-microstructures appear along the line of beam pulse propagation. Mathematical modelling of real Re(e) and imaginary Im(e) permittivity established that the spectral parameters in the reflectance spectra of polarized radiation almost fully matched. The analysis of the spectra also established that the maximum absorption was in the IR region due to the presence of a PVA film.
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spelling doaj.art-338210a0923842d0a50de7de66bc7f1a2023-02-06T11:40:24ZengVoronezh State UniversityКонденсированные среды и межфазные границы1606-867X2022-12-0124410.17308/kcmf.2022.24/10559Modelling optical polarization processes on laser modified titanium with a polyvinyl alcohol filmAnna V. Tsibulnikova0https://orcid.org/0000-0001-8578-0701Artemii A. Khankaev1https://orcid.org/0000-0003-0661-5228Dmitry A. Artamonov2Ilya G. Samusev3https://orcid.org/0000-0001-5026-7510Vasily A. Slezhkin4https://orcid.org/0000-0002-2801-7029Ivan I. Lyatun5https://orcid.org/0000-0002-4988-8077Valery V. Bryukhanov6https://orcid.org/0000-0003-4689-7207Immanuel Kant Baltic Federal University, 14 А. Nevskogo ul., Kaliningrad 236016, Russian FederationImmanuel Kant Baltic Federal University, 14 А. Nevskogo ul., Kaliningrad 236016, Russian FederationImmanuel Kant Baltic Federal University, 14 А. Nevskogo ul., Kaliningrad 236016, Russian FederationImmanuel Kant Baltic Federal University, 14 А. Nevskogo ul., Kaliningrad 236016, Russian FederationKaliningrad State Technical University, 1 Sovetsky pr., Kaliningrad 236022, Russian FederationImmanuel Kant Baltic Federal University, 14 А. Nevskogo ul., Kaliningrad 236016, Russian FederationImmanuel Kant Baltic Federal University, 14 А. Nevskogo ul., Kaliningrad 236016, Russian Federation The article presents the results of research of optical spectra of surface plasmon polaritons on laser modified titanium with a deposited micron polymer polyvinyl alcohol (PVA) film. The metasurface of titanium was created by means of femtosecond laser treatment with l = 1.035 µ and the duration t = 280 fs with linear and circular radiation polarization. Sets of laser pulses were applied pointwise to the surface with a step of 100 μm with the interval ti = 25–750 ms. In the case of linear radiation polarization, tracks of ripple structures with a line density of up to N ~ 1,200 mm–1 appeared on the scribed titanium surface. It was found that when titanium is exposed to circular polarization radiation, occasional ablation cavities with lobed circular ripple nano-microstructures appear along the line of beam pulse propagation. Mathematical modelling of real Re(e) and imaginary Im(e) permittivity established that the spectral parameters in the reflectance spectra of polarized radiation almost fully matched. The analysis of the spectra also established that the maximum absorption was in the IR region due to the presence of a PVA film.https://journals.vsu.ru/kcmf/article/view/10559plasmon resonancelaser structuringcircular polarisationmetasurfacepva film
spellingShingle Anna V. Tsibulnikova
Artemii A. Khankaev
Dmitry A. Artamonov
Ilya G. Samusev
Vasily A. Slezhkin
Ivan I. Lyatun
Valery V. Bryukhanov
Modelling optical polarization processes on laser modified titanium with a polyvinyl alcohol film
Конденсированные среды и межфазные границы
plasmon resonance
laser structuring
circular polarisation
metasurface
pva film
title Modelling optical polarization processes on laser modified titanium with a polyvinyl alcohol film
title_full Modelling optical polarization processes on laser modified titanium with a polyvinyl alcohol film
title_fullStr Modelling optical polarization processes on laser modified titanium with a polyvinyl alcohol film
title_full_unstemmed Modelling optical polarization processes on laser modified titanium with a polyvinyl alcohol film
title_short Modelling optical polarization processes on laser modified titanium with a polyvinyl alcohol film
title_sort modelling optical polarization processes on laser modified titanium with a polyvinyl alcohol film
topic plasmon resonance
laser structuring
circular polarisation
metasurface
pva film
url https://journals.vsu.ru/kcmf/article/view/10559
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AT artemiiakhankaev modellingopticalpolarizationprocessesonlasermodifiedtitaniumwithapolyvinylalcoholfilm
AT dmitryaartamonov modellingopticalpolarizationprocessesonlasermodifiedtitaniumwithapolyvinylalcoholfilm
AT ilyagsamusev modellingopticalpolarizationprocessesonlasermodifiedtitaniumwithapolyvinylalcoholfilm
AT vasilyaslezhkin modellingopticalpolarizationprocessesonlasermodifiedtitaniumwithapolyvinylalcoholfilm
AT ivanilyatun modellingopticalpolarizationprocessesonlasermodifiedtitaniumwithapolyvinylalcoholfilm
AT valeryvbryukhanov modellingopticalpolarizationprocessesonlasermodifiedtitaniumwithapolyvinylalcoholfilm