AOYAMA Shigeyoshi | Graduate Scool of Science, Hokkaido University
スポンサーリンク
概要
関連著者
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AOYAMA Shigeyoshi
Integrated Information Processing Center, Niigata University
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AOYAMA Shigeyoshi
Graduate Scool of Science, Hokkaido University
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池田 清美
理研
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Aoyama S
Integrated Information Processing Center Niigata University
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池田 清美
日大理工
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池田 清美
Дysнa(cccp)
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KATO Kiyoshi
Division of Physics, Graduate School of Science, Hokkaido University
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Kato Kiyoshi
Division Of Physics Graduate School Of Science Hokkaido University
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KATO Kiyoshi
Division of Endocrinology and Metabolism, Department of Homeostatic Regulation and Development, Niigata University Graduate School of Medical and Dental Sciences
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池田 清美
東大理
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AOYAMA Shigeyoshi
Information Processing Center, Kitami Institute of Technology
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Aoyama Shigeyoshi
Information Processing Center Kitami Institute Of Technology
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MYO Takayuki
General Education, Faculty of Engineering, Osaka Institute of Technology
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Myo Takayuki
Research Center For Nuclear Physics (rcnp) Osaka University:general Education Faculty Of Engineering
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Myo T
Division Of Physics Graduate School Of Science Hokkaido University
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Myo T
Research Center For Nuclear Physics (rcnp) Osaka University:general Education Faculty Of Engineering
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Myo Takayuki
Osaka Institute Of Technology
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MYO Takayuki
Research Center for Nuclear Physics (RCNP), Osaka University:General Education, Faculty of Engineering, Osaka Institute of Technology
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IKEDA Kiyomi
The Institute of Physical and Chemical Research (RIKEN)
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Myo Takayuki
Division Of Physics Graduate School Of Science Hokkaido University
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Ikeda Kiyomi
Department Of Physics Niigata University
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Ikeda Kiyomi
Department Of Physics College Of Science And Engineering Nihon University
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IKEDA Kiyomi
RI-Beam Science Laboratory, RIKEN
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Mukai Shigeo
Division Of Physics Graduate School Of Science Hokkaido University
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Ikeda Kiyomi
Department Of Physics Kyoto University
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KATO Kiyoshi
Department of Cosmosciences, Hokkaido University
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MASUI Hiroshi
Graduated School of Science, Hokkaido University
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KATO Kiyoshi
Graduated School of Science, Hokkaido University
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AOYAMA Shigeyoshi
Department of Physics, Hokkaido University
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MUKAI Shigeo
Department of Physics, Hokkaido University
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Kato Kiyoshi
Department Of Cosmosciences Hokkaido University
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Kato Kiyoshi
Graduate School Of Integrated Science & Arts University Of East Asia
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Kato Kiyoshi
Department Of Civil Engineering National Defense Academy
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MASUI Hiroshi
Meme Media Laboratory, Graduate School of Engineer, Hokkaido University
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池田 清美
理化学研究所
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MYO Takayuki
Research Center for Nuclear Physics (RCNP), Osaka University
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Ikeda K
Research Center For Nuclear Physics (rcnp) Osaka University:riken Nishina Center
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Ikeda Kiyomi
Physics Department Niigata University
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MYO Takayuki
Graduated School of Science, Hokkaido University
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MUKAI Shigeo
Division of Physics, Graduate School of Science, Hokkaido University
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AOYAMA Sigeyoshi
Division of Physics, Graduate School of Science, Hokkaido University
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Masui H
Information Processing Center Kitami Institute Of Technology
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Masui Hiroshi
Meme Media Laboratory Graduate School Of Engineer Hokkaido University
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lkeda Kiyomi
Department of Physics, Niigata University
著作論文
- The Complex Scaling Method for Many-Body Resonances and Its Applications to Three-Body Resonances
- Coupled Channel ^9Li+n+n Model of ^11Li
- Study of the s-Wave Properties for ^10Li through the Analysis of the Break-Up Reaction
- Three-Body Cluster Resonances in ^11Li and ^10He
- Beyond the Core+n+n Model Based on the Complex Scaling Method
- Extended ^9Li+n+n Three-Body Model of ^Li with a Pairing Correlation in ^9Li
- The Binding Mechanism and a Low-Lying Resonance in ^Li
- Three-Body Binding and Resonant Mechanisms in Neutron-Rich Light Nuclei Far from Stability Line : Pairing Correlation in Borromean Nuclei
- The Mechanism of the Anomalous Energy Shift between s-States in Mirror Nuclei with a Halo Structure
- A Study of the Binding Mechanism of ^Li by the ^9Li + n + n Model
- Theoretical Predictions of Low-Lying Three-Body Resonance States in ^6He : Nuclear Physics
- Binding Mechanism of a Neutron-Rich Nucleus ^6He and Its Excited States
- Partial Decay Widths in Coupled-Channel Systems with the Complex-Scaled Jost Function Method