Numerical analysis of optical modes in two-dimensionally ordered polystyrene spheres in attenuated total reflection geometry
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概要
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We have numerically calculated attenuated total reflection (ATR) signals due to two-dimensionally ordered (2D) spheres on a glass substrate for both TE- and TM-polarized incident light beams using a finite difference time-domain method. The calculated ATR spectra are in good agreement with the experimental ones reported previously by us. From the ATR spectra and the spatial distribution of light intensity, it has been found that the ATR dips are due to the excitation of the optical modes in the 2D spheres. The propagation length of the optical modes is confirmed to be comparable to the diameter of the sphere. It indicates that the optical modes propagate in a variety of fashions and the light intensity in the 2D spheres takes a maximum value at the contact points between the spheres.
- Publication Office, Japanese Journal of Applied Physics, Faculty of Science, University of Tokyoの論文
- 2001-04-15
著者
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Koda T
Department Of Applied Physics The University Of Tokyo
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Ohtaka K
Department Of Applied Physics University Of Tokyo
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Fukui Masuo
Department Of Electrical And Electronic Engineering Faculty Of Engineering The University Of Tokushi
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Nakai Teruo
Department Of Civil Engineering Nagoya Institute Of Technology
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Okamoto T
Department Of Agricultural Chemistry Faculty Of Agriculture Kinki University
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SHINYA A
Department of Crown and Bridge, School of Dentistry at Tokyo, The Nippon Dental University
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Haraguchi Masanobu
Department Of Electrical And Electronic Engineering Faculty Of Engineering The University Of Tokushi
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Shimada R
Department Of Food Science And Technology Tokyo University Of Fisheries
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Ohtaka Kazuo
Department of Applied Physics, Faculty of Engineering, Chiba University, 1-33 Yayoicho, Inage-ku, Chiba 263-8522, Japan
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Shinya Akihiko
Department of Optical Science and Technology, Faculty of Engineering, The University of Tokushima, 2-1 Minamijosanjima, Tokushima 770-8506, Japan
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Koda Takao
Department of Mathematics and Physics, Faculty of Science, Japan Women's University, 2-8-1 Mejirodai, Bunkyo-ku, Tokyo 112-8681, Japan
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Nakai Teruo
Department of Optical Science and Technology, Faculty of Engineering, The University of Tokushima, 2-1 Minamijosanjima, Tokushima 770-8506, Japan
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