高橋 正雄 | Institute Of Materials Science University Of Tsukuba
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概要
関連著者
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高橋 正雄
神奈川工科大
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高橋 正雄
Institute Of Materials Science University Of Tsukuba
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Takahashi M
Institute Of Materials Science University Of Tsukuba
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三井 和博
第2材料分析研究室運営委員会
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Tokita M
Fukuoka Institute Of Technology
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梅原 雅捷
無機材質研究所
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三井 和博
神奈川工科大学
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高橋 正雄
神奈川工大
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高橋 正雄
神奈川工科大学基礎・教養教育センター
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Wolfgang Nolting
Humboldt-universitat Zu Berlin Institute Fur Physik
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Wolfgang Nolting
Humboldt-Universitat zu Berlin, Institute fur Physik
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Tokita Masahiko
Fukuoka Institute Of Technology
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KUBO Hidenori
Fukuoka Institute of Technology
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ZENMYO Kazuko
Fukuoka Institute of Technology
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Kubo Hidenori
Department Of Electronics Fukuoka Institute Of Technology
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Zenmyo Kazuko
Department Of Physics Fukuoka Institute Of Technology
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Zenmyo Kazuko
Fukuoka Insititute Of Technology
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三井 和博
神奈川工大
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Kubo H
Fukuoka Institute Of Technology
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Zenmyo K
Fukuoka Institute Of Technology
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Kubo Hidenori
Fukuoka Insititute Of Technology
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IGARASHI Jun-ichi
Faculty of Science, Ibaraki University
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Nakamura Hatsuo
Faculty Of Engineering Osaka Electro-communication University
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中村 裕之
Graduate School Of Material Science University Of Hyogo
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TAKEDA Kazuyoshi
Department of Applied Quantum Physics, Kyushu University
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今林 博道
広島大学生物生産学部
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五十嵐 潤一
茨大理
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Hatano N
Univ. Tokyo Tokyo
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Hatano Naomichi
Department Of Physics University Of Tokyo:lyman Laboratory Of Physics Harvard University
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Hatano N
Aoyama Gakuin Univ. Tokyo
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Fulde P
Max-plank-institute Fur Physik Komplexer Systeme
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Fulde Peter
Max-planck-institut Fur Physik Komplexer Systeme
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Fulde Peter
Max-planck-institut Fur Festkorperforschung
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YAMAGATA Kazuo
Department of Physics,Faculty of Science,Kobe University
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Nakamura H
Univ. Tokyo
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Nakamura H
Institute For Protein Research Osaka University
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Yamagata K
Iwaki Meisei University
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Yamagata Kazuo
Department Of Physics And Sciences Nihon University
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梅原 雅捷
無機材質研
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Igarashi Jun-ichi
Faculty Of Engineering Gunma University
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Fulde Peter
Max-plank-institute Fur Physik Komplexer Systeme
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Nakamura Hiroaki
Institute for Solid State Physics, University of Tokyo
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Hatano Naomichi
Department Of Physics Aoyama Gakuin University
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Takeda Kazuyoshi
Department Of Applied Quantum Physics Faculty Of Engineering Kyushu University:institute Of Environm
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Nakamura Hiroaki
Institute For Solid State Physics University Of Tokyo
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HATANO Naomichi
Department of Physics, Aoyama-Gakuin University
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Takahashi Masao
Humboldt-Universitat zu berlin, Institute fur Physik
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KAWAE Tatsuya
Department of Applied Quantum Physics, Kyushu University
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Deguchi Hiroyuki
Department of Applied Science, Faculty of Engineering, Kyushu University
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TAKAHASHI Minoru
Institute for Solid State Physics, University of Tokyo
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TAKAHASHI Manabu
Faculty of Engineering, Gunma University
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HIGUCHI Yoshihiro
Department of Cardiovascular, Respiratory and Geriatric Medicine, Kyushu University Hospital at Bepp
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FUJITA Osamu
Department of Physics,Aoyama-Gakuin University
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TAKAHASHI Minoru
Department of Applied Physics, Tohoku University
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Fujita O
Hokkaido Univ. Sapporo Jpn
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MITO Masaki
Department of Electronics, Faculty of Engineering, Kyushu Institute of Technology
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万代 敏夫
第2材料分析研究室運営委員会
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Fujita O
Kyushu Univ. Fukuoka
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FUJITA Osamu
Kariya General Hospital Eastern Division
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Matsumura M
Faculty Of Science Kochi University
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Deguchi Hiroyuki
Department Of Applied Science Faculty Of Engineering Kyushu University
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Kawae Tatsuya
Department Of Applied Quantum Physics Kyushu University
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Higuchi Yoshihiro
Department Of Applied Quantum Physics Faculty Engineering Graduate School Of Kyusyu University
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Matsumura M
Department Of Material Science Faculty Of Science Kochi University
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Hitaka Masako
Department of Applied Science,Faculty of Engineering,Kyushu University
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Motokawa Mitsuhiro
Crest Japan Science And Technology:institute For Material Research Tohoku University
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MURAOKA Yoshinori
Department of General Education, Ariake National College of Technology
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YAMAGATA Kazuo
College of Science and Engineering, Iwaki Meisei University
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MATSUMURA Manabu
Department of Applied Physics, Faculty of Engineering, Kyushu University
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OOHASHI Tooru
College of Science and Engineering, Iwaki Meisei University
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YOMAGATA Kazuo
College of Science and Engineering, Iwaki Meisei University
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Fujita Osamu
Department Of Physics Aoyama-gakuin University
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Matsumura Masahiro
Department Of Physics Faculty Of Science Kouchi University
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Oohashi Tooru
College Of Science And Engineering Iwaki Meisei University
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Masako Hitaka
Department Of Physics Faculty Of Science And Engineering Saga University
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TAKAHASHI Manabu
Max-Planck-Institut fur Physik Komplexer Systeme, Faculty of Engineering,Gunma University
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武澤 隆
横浜国立大学教育学部
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Muraoka Yoshinori
Department Of Applied Science Faculty Of Engineering 36 Kyusyu University
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Fujita Osamu
Department Of Mechanical Engineering Hokkaido University
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Takahashi Minoru
Department Of Applied Physics Faculty Of Engineering Tohoku University
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Fujita Osamu
Department Of Mechanical And Space Engineering Hokkaido University
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Takahashi Manabu
Faculty Of Engineering Gunma University
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Takahashi Minoru
Institute For Solid Physics University Of Tokyo
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Takahashi Minoru
Department Of Appied Physics Tohoku University
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Fujita Osamu
Department of Bioresources Science and Technology, Graduate School of Biosphere Science, Hiroshima University
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Hitaka Masako
Department of Applied Science, Faculty of Engineering, Kyushu University
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Nolting Wolfgang
Humboldt-Universitat zu Berlin, Institute fur Physik
著作論文
- Dynamical coherent potential approach for the s-f model in antiferromagnetic semiconductors
- 17aYH-1 磁気的不純物バンドの形成と強磁性の出現
- Exchange-Induced Band Splitting in Diluted Magnetic Semiconductors under a Weak Magnetic Field
- 28aTB-10 希薄磁性半導体におけるp-d交換相互作用の多重散乱の効果
- Quasiparticle Band of Antiferromagnetic Semiconductors -Single-Site Approximation for the s-f Model-
- Site Dilution Study of a Square Lattice Heisenberg Antiferromagnet with S=5/2 Covering the Percolation Threshold : Condensed Matter: Electronic Properties, etc.
- Origin of Soft Spin Structure in Mn Formate Di-Urea : Electronic Properties, etc.
- Nuclear Quadrupole Interaction of Cl Nuclei in Jahn-Teller Distorted Crystal Rb_2CrCl_4
- Cu-Pt系合金の規則格子形成に対する添加元素の影響
- s-fモデルと電子状態 X (13) -CPAの新しい計算方法-
- s-fモデルと電子状態 XI (15) -fcc反強磁性半導体とCPAの結果-
- s-fモデルと電子状態 XI (14) -bcc反強磁性半導体とCPAの結果-
- s-fモデルと電子状態 XII (12) -スピン相対関関数の規格化の効果-
- s-fモデルと電子状態 XI (11) -fcc反強磁性半導体へのCPAの適用-
- Universal Finite-Size Scaling Function of the Ferromagnetic Heisenberg Chain in a Magnetic Field. II : Nonlinear Susceptibility
- Universal Finite-Size Scaling Function of the Ferromagnetic Heisenberg Chain in a Magnetic Field
- s-fモデルと電子状態 X (10) -bcc反強磁性半導体へのCPAの適用-
- Ti-(Pt,Au)合金におけるB2→B19型マルチンサイト変態と形状記憶効果
- 急冷不規則化したCu-15at%Pd合金の昇温による短範囲規則の発達と電気抵抗の変化
- s-fモデルと電子状態 VII -グリーン関数法VとVI-
- s-fモデルと電子状態 VIII -強磁性温度領域でのCPA-
- s-fモデルと電子状態 IX -電気伝導度の計算-
- 14a-DE-16 s-fモデルと電子状態III
- s-fモデルと電子状態 VI -グリーン関数法 IV と状態密度-
- s-fモデルと電子状態 IV -CPAとグリーン関数法 I との関連-
- s-fモデルと電子状態 V -グリーン関数法 III と状態密度-
- Cu-18at%Pd合金の規則 -不規則転移による電気抵抗の変化と短範囲規則状態による影響
- 27a-X-3 92年度入学生にみる高校物理の理解度
- Cu-Pt系合金の規則-不規則転移にともなう熱電能の変化
- s-fモデルと電子状態 III -基礎方程式の改良-
- s-fモデルと電子状態 II -基礎方程式の解析-
- s-fモデルと電子状態 I -状態密度-
- 種々の温度で規則化したCu-15at%Pd合金の昇温過程中の電気抵抗変化と熱的挙動
- Gd-doped EuO,EuSの実験について
- 30p-X-1 s-fモデルと電子状態 I
- Pre-K-Edge Structure on Anomalous X-Ray Scattering in LaMnO_3 : Condensed Matter: Electronic Properties etc.
- Anomalous X-Ray Scattering in LaMnO_3
- マダイ幼魚の酸素消費量に及ぼす群効果〔英文〕
- ブル-ギルの食餌条件反応と強化スケジュ-ルの関係について
- 後期仔魚期および稚魚期のマダイの酸素消費量,特に群効果について〔英文〕
- Improved Effective-Medium Approach to the s-f Model in Antiferromagnetic Semiconductors
- A New Approach to the RKKY Interaction
- Conduction electron (hole) states under a strong magnetic field in diluted magnetic semiconductors
- Coherent Potential Approach to the s-f Model in Magnetic Semiconductors
- Comparison between approximate solution and exact solution for the bandedge energy of a magnetic semiconductor in the multiple scattering theory
- 28a-YN-11 希薄磁性半導体中の伝導電子(ホール)状態
- 磁性半導体中の伝導電子状態-fスピン相関の効果
- 強磁性半導体のスピン分極バンド構造
- 磁性半導体における伝導電子と局在スピンとの間の交換相互作用(第42回 物性若手夏の学校(1997年度))
- 磁性半導体中の伝導電子状態--単一サイト近似のs-fモデルへの適用
- 30p-R-12 強磁性半導体の電子スピン偏極
- 虹の輪の中に(談話室)
- 「鉛直な壁に立て掛けた棒」の問題(談話室)
- 私が実験嫌いになった場所
- 大学カリキュラム改革の方向と物理学の位置 (「大学理工系の基礎物理」)
- 27a-D-4 強磁性半導体中の伝導電子状態III
- 26a-M-8 強磁性半導体中の伝導電子状態 II
- 強磁性半導体中の伝導電子状態-2-基礎方程式
- 強磁性半導体中の伝導電子状態-3-s-f交換相互作用のT行列要素
- 強磁性半導体中の伝導電子状態