Control of Refractive Index of Fluorinated Polyimide by Proton Beam Irradiation
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概要
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To clarify the feasibility of controlling the refractive index of a polymer by proton beam irradiation, we irradiated 1.0 MeV protons to a fluorinated polyimide film. Before and after the proton irradiation at a fluence between 1\times 10^{14} and 7\times 10^{16} cm-2, the film surface was scanned by a profilometer. It was found that the depth of a dent, which increases with fluence, was induced by the irradiation. The refractive index of the ion-irradiated region was calculated using the Lorentz--Lorenz equation, substituting the depth of the dent and the projected range of the protons. When the fluorinated polyimide was irradiated at a fluence of 7\times 10^{16} cm-2, the refractive index increased by about 3.3%, which agrees with the increment in refractive index measured by spectroscopic ellipsometry. The increment in refractive index (0.21%) induced by the irradiation of protons at the fluence of 1\times 10^{15} cm-2 is comparable to the value (0.35%) observed when protons were irradiated to SiO2 glass at a similar fluence. Therefore, it is reasonable to assume that the ion irradiation to a polymer can be a good method for fabricating a high-performance polymer-based optical waveguide.
- 2013-01-25
著者
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Saito Keisuke
Department Of Innovative And Engineering Materials Interdisciplinary Graduate School Of Science And
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Ohki Yoshimichi
Department Of Electrical Electronic And Computer Engineering Waseda University
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Nishikawa Hiroyuki
Department of Applied Physics and Chemistry, The University of Electro-Communications, Chofu, Tokyo 182-8585, Japan
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Nishikawa Hiroyuki
Department of Electrical Engineering, Shibaura Institute of Technology, Koto, Tokyo 135-8548, Japan
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Arai Yukitaka
Department of Electrical Engineering and Bioscience, Waseda University, Shinjuku, Tokyo 169-8555, Japan
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