Paper
4 November 1994 Optical and structural properties of YF3 thin films prepared by ion-assisted deposition or ion beam sputtering techniques
Jean-Yves Robic, Viviane Muffato, Patrick Chaton, Michel Ida, M. Berger
Author Affiliations +
Proceedings Volume 2253, Optical Interference Coatings; (1994) https://doi.org/10.1117/12.192090
Event: 1994 International Symposium on Optical Interference Coatings, 1994, Grenoble, France
Abstract
The properties of materials in thin films are strongly dependent on the coating techniques and on the technological parameters. We have investigated about some optical and structural properties of YF3 thin films prepared using different energetic techniques: ion assisted deposition (IAD) and ion beam sputtering (IBS). The properties of the thin films obtained by these energetic processes are compared to the properties obtained by classical electron beam evaporation. In classical evaporation, the optical properties in the visible range depend on the temperature of the deposition and on the incidence of the vapor flux. The optical properties are correlated with the density of the films measured by Rutherford backscattering. In the case of IAD, the influence on optical properties, both in the visible and in the infrared range, of some technological parameters (pressure, ion energy and ion density) are illustrated. The refractive index and the extinction coefficient have been obtained by spectrophotometry. Furthermore, we show that IBS may lead to YF3 layers of high density.
© (1994) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Jean-Yves Robic, Viviane Muffato, Patrick Chaton, Michel Ida, and M. Berger "Optical and structural properties of YF3 thin films prepared by ion-assisted deposition or ion beam sputtering techniques", Proc. SPIE 2253, Optical Interference Coatings, (4 November 1994); https://doi.org/10.1117/12.192090
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Cited by 9 scholarly publications.
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KEYWORDS
Refractive index

Ions

Optical properties

Ion beams

Thin films

Infrared radiation

Absorption

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