Diamond Like Carbon Films Containing Si: Structure and Nonlinear Optical Properties
Алмазоподобные углеродные плёнки, содержащие Si: структура и нелинейно-оптические свойства
2020-02-23
SCID: 54.1/v6zzezbj
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diamond-like carbon filmsnonlinear optical propertiesphotoexcited carrier relaxationreactive magnetron sputteringsilicon doping
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Abstract (AI)
In the present research diamond-like carbon (DLC) films containing 4–29 at.% of silicon were deposited by reactive magnetron sputtering of carbon target. Study by X-ray photoelectron spectroscopy revealed the presence of Si–C bonds in the films. Nevertheless, a significant amount of Si–O–C and Si–Ox bonds was present too. The shape of the Raman scattering spectra of all studied diamond-like carbon containing silicon (DLC:Si) films was typical for diamond-like carbon. However, some peculiarities related to silicon doping were found. Studies on the dependence of DLC:Si of the optical transmittance spectra on the Si atomic concentration have shown that doping by silicon affects linear, as well as nonlinear, optical properties of the films. It is shown that the normalized reflectance of DLC:Si films decreased with the increased exciting light fluence. No clear relation between the normalized reflectance and photoexcited charge carrier relaxation time was found. It was suggested that that the normalized reflectance decrease with fluence can be related to nonlinear optical properties of the hydrogenated diamond-like carbon phase in DLC:Si film.
Key Findings
1
Normalized reflectance decreased with increasing excitation-light fluence, possibly due to nonlinear optical effects in the hydrogenated diamond-like carbon phase; no clear relation with carrier relaxation time was found.
2
Raman spectra retained the characteristic diamond-like carbon shape, while silicon incorporation introduced specific spectral peculiarities.
3
Reactive magnetron sputtering produced diamond-like carbon films containing 4–29 at.% silicon.
4
Silicon doping altered both the linear and nonlinear optical properties of the films, including their optical transmittance.
5
X-ray photoelectron spectroscopy detected Si–C bonds alongside substantial Si–O–C and Si–Ox bonding.
Research Object
Silicon-containing diamond-like carbon (DLC:Si) films with 4–29 at.% silicon
Research Subject
The structure and linear and nonlinear optical properties of DLC:Si films, including fluence-dependent reflectance and charge-carrier relaxation
Publication Details
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2020-02-23
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