Отрывок: These ridges are orientated perpendicular to the polarization vector of the ultrashort laser pulse with an average periodicity of 0.68 μm, which is slightly shorter than the wavelength of the laser radiation. Fig. 4 shows Features of changes in the nanostructure and colorizing of copper during scanning… G. Liedl, R. Pospichal, S.P. Murzin Computer Optics, 2017, Vol. 41(4) 507 SEM ...
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dc.contributor.authorLiedl, G.-
dc.contributor.authorPospichal, R.-
dc.contributor.authorMurzin, S.P.-
dc.date.accessioned2017-10-25 12:27:45-
dc.date.available2017-10-25 12:27:45-
dc.date.issued2017-08-
dc.identifierDspace\SGAU\20171020\65749ru
dc.identifierDspace\SGAU\20171025\65749ru
dc.identifier.citationLiedl G, Pospichal R, Murzin SP. Features of changes in the nanostructure and colorizing of copper during scanning with a femtosecond laser beam. Computer Optics 2017; 41(4): 504-509.ru
dc.identifier.urihttp://repo.ssau.ru/handle/Zhurnal-Komputernaya-optika/Features-of-changes-in-the-nanostructure-and-colorizing-of-copper-during-scanning-with-a-femtosecond-laser-beam-65749-
dc.description.abstractWe have studied the nanostructuring and colorizing of the copper surface by scanning with a femtosecond laser beam with a near-Gaussian beam profile. The experimental studies were conducted using a femtosecond laser comprising a Ti:Sapphire oscillator and a multi-pass amplifier with the maximum pulse energy of 0.7 mJ, pulse frequency of 1 kHz, and pulse duration <30 fs. It is shown that the use of a short-pulsed femtosecond laser leads to the formation of wavelength scale periodic surface structures and eventually increases the brightness of the color of the copper surface. It is revealed that via reciprocally scanning the copper surface by multiple ultrashort laser pulses with a weakly asymmetric spatial energy density distribution and an energy density below the material ablation threshold, it is possible to create a combined nanostructure composed of low-spatial-frequency laser-induced periodic surface structures coated with nanoscale roughness. It is shown that relatively minor changes in the nanostructures obtained by scanning the copper surface by multiple ultrashort laser pulses can lead to a significant change in the color during surface colorizing.ru
dc.language.isoenru
dc.publisherСамарский университетru
dc.relation.ispartofseries41;4-
dc.subjectfemtosecond laser beamru
dc.subjectcopper colorizingru
dc.subjectnanostructureru
dc.subjectforward and reverse scanningru
dc.subjectenergy densityru
dc.titleFeatures of changes in the nanostructure and colorizing of copper during scanning with a femtosecond laser beamru
dc.typeArticleru
dc.textpartThese ridges are orientated perpendicular to the polarization vector of the ultrashort laser pulse with an average periodicity of 0.68 μm, which is slightly shorter than the wavelength of the laser radiation. Fig. 4 shows Features of changes in the nanostructure and colorizing of copper during scanning… G. Liedl, R. Pospichal, S.P. Murzin Computer Optics, 2017, Vol. 41(4) 507 SEM ...-
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