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Ultima descărcare din IBN: 2024-03-21 20:48 |
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535.4+538.958+538.975 (1) |
Интерференция. Дифракция. Дифракционное рассеяние (10) |
Физика конденсированного состояния (жидкое и твердое состояние) (349) |
SM ISO690:2012 ABASHKIN, Vladimir, AKIMOVA, Elena, MESHALKIN, Alexei, PRISAKAR, Alexandr, TRIDUKH, Ghennadi, VLCEK, Miroslav, LOGHINA (BEŢ), Liudmila, VOYNAROVYCH, Ivan. Investigation of Structural Features of As2S3-Se Multilayer Nanostructure by Raman Spectroscopy . In: Электронная обработка материалов, 2016, nr. 4(52), pp. 67-73. ISSN 0013-5739. |
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Электронная обработка материалов | |||||||
Numărul 4(52) / 2016 / ISSN 0013-5739 /ISSNe 2345-1718 | |||||||
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CZU: 535.4+538.958+538.975 | |||||||
Pag. 67-73 | |||||||
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The focus of this research is on the investigation of structural changes in the As2S3-Se multilayer nanostructure and on the examination of a relative contribution of As2S3 and Se layers to nanostructuring by measuring the Raman spectra. The formation of the As2S3-Se nanostructure by an alternate As2S3 and Se layers deposition was applied. The diffraction efficiency dependence on the exposure of a CW DPSS laser were monitored in a transmission mode of the1st order diffracted beam intensity and measured in real-time at the normal incidence of the laser diode beam (λ = 650 nm). From the comparison of these dependences for a set of samples we have chosen the multilayer nanostructure As2S3-Se with optimal recording properties meaning maximum both the value and the rate of diffraction efficiency. Our results are found to be of practical interest as they allow a significant improvement of the diffraction efficiency of the directly recorded relief gratings. |
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Cuvinte-cheie chalcogenide glasses, nanostructures, Raman spectroscopy, surface grating |
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