Rchr
J-GLOBAL ID:200901059769918496
Update date: May. 18, 2020
Fujimori Naoji
フジモリ ナオジ | Fujimori Naoji
Affiliation and department:
National Institute of Advanced Industrial Science and Technology
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Homepage URL (1):
http://www.aist.go.jp/RESEARCHERDB/cgi-bin/worker_detail.cgi?call=namae&rw_id=N42305311
Research keywords (1):
ダイヤモンド 気相合成 半導体デバイス センサー 表面修飾
MISC (15):
Hideaki Yamada, Akiyoshi Chayahara, Yoshiaki Mokuno, Yousuke Soda, Yuji Horino, Shin-ichi Shikata, Naoji Fujimori. Qualitative correspondences of experimentally obtained growth rates and morphology of single-crystal diamond with numerical predictions of plasma and gas dynamics in microwave discharges for various substrate holder shapes. JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS BRIEF COMMUNICATIONS & REVIEW PAPERS. 2006. 45. 10B. 8177-8182
Hideaki Yamada, Akiyoshi Chayahara, Yoshiaki Mokuno, Yousuke Soda, Yuji Horino, Naoji Fujimori. Numerical analysis of power absorption and gas pressure dependence of microwave plasma using a tractable plasma description. DIAMOND AND RELATED MATERIALS. 2006. 15. 9. 1395-1399
Hideaki Yamada, Akiyoshi Chayahara, Yoshiaki Mokuno, Yuji Horino, Naoji Fujimori. Atomic scale interactions between hydrocarbon radicals and diamond (100) surfaces. DIAMOND AND RELATED MATERIALS. 2006. 15. 4-8. 522-525
Y. Mokuno, A. Chayahara, Y. Soda, H. Yamada, Y. Horino, N. Fujimori. High rate homoepitaxial growth of diamond by microwave plasma CVD with nitrogen addition. DIAMOND AND RELATED MATERIALS. 2006. 15. 4-8. 455-459
Y Horino, A Chayahara, Y Mokuno, H Yamada, N Fujimori. High-rate growth of large diamonds by microwave plasma chemical vapor deposition with newly designed substrate holders. NEW DIAMOND AND FRONTIER CARBON TECHNOLOGY. 2006. 16. 2. 63-69
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Association Membership(s) (2):
応用物理学会
, ニューダイヤモンドフォーラム
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