Infrared transmission properties of germanium carbon thin films deposited by reactive RF magnetron sputtering |
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Authors: | Yangping Li Zhengtang Liu Hailong Zhao Liping Feng |
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Affiliation: | School of Materials Science and Engineering, Northwestern Polytechnical University, No. 127, West Youyi Road, Xi'an 710072, Shaanxi, China |
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Abstract: | Germanium carbon (GeC) thin films were prepared on ZnS substrates by reactive RF magnetron sputtering in Ar and CH4 mixtures with a Ge disc as the target. H content in the films was studied as a function of the deposition parameters and low H content GeC film was obtained. RF power had a little effect on IR absorptions, hence had a little effect on H content. IR absorption of the GeC film increased a little with the increase in partial pressure of CH4 as well as total pressure of gas mixture. Increase in substrate temperature decomposed CH4 and CHx in the GeC film into C and H and H was desorbed from the film, lowering the IR absorption. However, high substrate temperature prevented CH4 or CHx from adsorbing onto the substrate, which decreased C content in the GeC film and increased the film's refractive index. Higher annealing temperature of the GeC film reduced H content, but high annealing temperature (500 °C) caused the graphitization of the GeC film and destroyed its continuity. |
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Keywords: | Germanium carbon Thin film Infrared transmission Magnetron sputtering |
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