Texture Structure Analysis and Crystalline Quality Improvement of CeO_2(110) Layers Grown on Si(100) Substrates
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概要
- 論文の詳細を見る
The texture structure of epitaxially grown CeO_2(110) layers on Si(100) substrates was investigated using high-resolution electron microscopy. Surface morphology observations using high-resolution secondary electron microscopy indicated that the layer reveals a surface morphology with stripes aligned in two perpendicular directions. High-resolution transmission electron microscopy analysis verified that the crystallographic in-plane directions of the two kinds of domains correlated with the two directional stripes are exactly perpendicular to each other. The texture structure is well explained crystallographically by the model, which has been proposed by the authors. It is found that silicon substrates with off-orientation of acd0.17° lead to the predominance of one kind of stripes, which are aligned in the off-orientation direction. On the other hand, the population of the two kinds of stripes are nearly equal in the layer grown on substrates without off-orientation. The crystalline quality of the former is significantly improved, as normalized minimum yields in the ion channeling analysis of the former are more than 27% smaller than that of the latter.
- 社団法人応用物理学会の論文
- 1992-12-15
著者
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Yokoyama Y
Inst. For Materials Res. Tohoku Univ.
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YAMADA Yoshinori
Department of Surgery, Kitasato Institute Hospital
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Inoue T
Tohoku Univ. Sendai Jpn
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Inoue Tatsuya
Materials And Components Research Laboratory Components And Devices Research Center Matsushita Elect
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Inoue Tetsushi
Research Laboratory Of Resources Utilization Tokyo Institute Of Technology
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Yoshida Y
Department Of Energy Engineering And Science Nagoya University
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SASAKI EIJI
Department of Gastroenterology, Graduate School of Medicine, Osaka City University
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YAMAMOTO Yasuhiro
Research Center of Ion Beam Technology, Hosei University
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Yamada Y
Akita Univ. Akita Jpn
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Yamada Yuh
National Research Institute For Metals
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Inoue Takahito
Electrotechnical Laboratory
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INOUE Tomoyasu
Department of Electronic Engineering, Iwaki Meisei University
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Ohsuna T
Tohoku Univ. Sendai Jpn
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Ohsuna T
Iwaki Meisei Univ. Fukushima
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Ohsuna Tetsu
Department Of Electronic Engineering Iwaki Meisei University
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Sasaki Eiji
Department Of Electronic Engineering College Of Science And Engineering Iwaki Meisei University
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Sasaki Eiji
Department Of Applied Biochemistry Faculty Of Agriculture Yamaguchi University
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Itoh Y
Imra Material R&d Co. Ltd.
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SAKURAI Yoshinobu
Research Center of Ion Beam Technology, Hosei University
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Itoh Youichi
Department Of Electronic Engineering College Of Science And Engineering Iwaki Meisei University
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WAKAMATSU Kiyoshi
Department of Electronic Engineering, College of Science and Engineering, Iwaki Meisei University
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NOZAWA Takayuki
Department of Electronic Engineering, College of Science and Engineering, Iwaki Meisei University
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Sakurai Y
Shonan Inst. Technol. Kanagawa Jpn
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Wakamatsu K
Department Of Electronic Engineering College Of Science And Engineering Iwaki Meisei University
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Nozawa Takayuki
Department Of Electronic Engineering College Of Science And Engineering Iwaki Meisei University
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Yamada Yoshinori
Department Of Applied Physics Faculty Of Engineering Hokkaido University
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Yamamoto Yasuhiro
Research Center Of Ion Beam Technology Hosei University
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Yamamoto Yasuhiro
Research Center For Advanced Science And Technology University Of Tokyo
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Yokoyama Yoshihiko
Superconductivity Research Laboratory, International Superconductivity Technology Center
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