Rchr
J-GLOBAL ID:201601000649075003
Update date: Sep. 08, 2024
Watanabe Hiroshi
ワタナベ ヒロシ | Watanabe Hiroshi
Affiliation and department:
Homepage URL (1):
https://sites.google.com/site/hpofhwatanabe/top
Research field (1):
Magnetism, superconductivity, and strongly correlated systems
Research keywords (1):
物性理論、強相関電子系
Research theme for competitive and other funds (7):
- 2024 - 2027 Creation of unconventional high temperature superconductors through manifestation of multilayer Hubbard models
- 2022 - 2025 Material design based on a theoretical study about correlation mechanism between superconducting critical temperature and dp hybridization
- 2020 - 2023 軌道自由度がもたらす銅酸化物高温超伝導体の新展開の理論
- 2014 - 2018 Theory for exciton condensation and novel superconductivity induced by interband interaction
- 2013 - 2017 Strongly correlated quantum phases in 5d transition metal oxides with a strong spin-orbital coupling
- 2012 - 2015 Theoretical study of a novel superconductivity induced by spin-orbit coupling and pseudospin fluctuation
- 2007 - 2008 強相関電子系における超伝導・磁性・電荷秩序に関する理論的研究
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Papers (38):
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Ibuki Terada, Sota Kitamura, Hiroshi Watanabe, Hiroaki Ikeda. Limitations and improvements of the relaxation time approximation in the quantum master equation: Linear conductivity in insulating systems. Physical Review B. 2024. 109. L180302-1-L180302-6
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渡部 洋, 池田浩章, 柚木清司. 軌道自由度から導かれる銅酸化物高温超伝導体の統一的理解. 固体物理. 2023. 58. 5. 261-272
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Hiroshi Watanabe, Tomonori Shirakawa, Kazuhiro Seki, Hirofumi Sakakibara, Takao Kotani, Hiroaki Ikeda, Seiji Yunoki. Monte Carlo study of cuprate superconductors in a four-band d-p model: role of orbital degrees of freedom. Journal of Physics: Condensed Matter. 2023. 35. 19. 195601-195601
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Hiroshi Watanabe, Tomonori Shirakawa, Kazuhiro Seki, Hirofumi Sakakibara, Takao Kotani, Hiroaki Ikeda, Seiji Yunoki. Unified description of cuprate superconductors using a four-band d-p model (vol 3, 033157, 2021). PHYSICAL REVIEW RESEARCH. 2022. 4. 2
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Hiroshi Watanabe, Tomonori Shirakawa, Kazuhiro Seki, Hirofumi Sakakibara, Takao Kotani, Hiroaki Ikeda, Seiji Yunoki. Unified description of cuprate superconductors using a four-band $d$-$p$ model. Physical Review Research. 2021. 3. 3
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MISC (29):
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Watanabe Hiroshi, Seo Hitoshi, Yunoki Seiji. 20pAS-14 Theoretical study of intradimer charge degrees of freedom, magnetism, and superconductivity in κ-type molecular conductors. Meeting Abstracts of the Physical Society of Japan. 2016. 71. 1866-1866
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西口和孝, 白川知功, 渡部洋, 有田亮太郎, 柚木清司, 白川知功, 渡部洋, 有田亮太郎, 柚木清司, 柚木清司. イリジウム酸化物の超伝導状態におけるナイトシフトの乱雑位相近似による理論的解析. 日本物理学会講演概要集(CD-ROM). 2016. 71. 1
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西口和孝, 白川知功, 白川知功, 渡部洋, 渡部洋, 有田亮太郎, 有田亮太郎, 柚木清司, 柚木清司, 柚木清司. イリジウム酸化物における核磁気共鳴の乱雑位相近似による理論的解析. 日本物理学会講演概要集(CD-ROM). 2015. 70. 1
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西口和孝, 白川知功, 白川知功, 渡部洋, 渡部洋, 有田亮太郎, 有田亮太郎, 柚木清司, 柚木清司, 柚木清司. イリジウム酸化物における核磁気共鳴での強いスピン軌道相互作用の効果の理論的研究. 日本物理学会講演概要集(CD-ROM). 2015. 70. 2
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西口和孝, 西口和孝, 白川知功, 白川知功, 渡部洋, 渡部洋, 有田亮太郎, 有田亮太郎, 柚木清司, 柚木清司. イリジウム酸化物における超伝導の可能性. 日本物理学会講演概要集. 2014. 69. 1
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Lectures and oral presentations (122):
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Possibility of BCS-BEC crossover in κ-type molecular superconductors
(2023)
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κ-ET系有機超伝導体におけるBCS-BECクロスオーバーの可能性
(2023)
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Possibility of BCS-BEC crossover in κ-ET organic superconductors: Effect of geometrical frustration
(The Physical Society of Japan, 78th Annual Meeting 2023)
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強相関電子系におけるBCS-BECクロスオーバーの可能性:有機超伝導体と銅酸化物高温超伝導体
(2023)
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Possibility of BCS-BEC crossover in unconventional superconductors
(International Conference on Quantum Liquid Crystals 2023)
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Professional career (1):
Work history (9):
- 2024/04 - 現在 Nihon University College of Industrial Technology
- 2020/04 - 2024/03 Ritsumeikan University
- 2019/04 - 2020/03 理化学研究所 開拓研究本部 協力研究員
- 2018/04 - 2019/03 Waseda University Institue for Advanced Study
- 2016/04 - 2018/03 Waseda University Institue for Advanced Study
- 2014/04 - 2016/03 RIKEN CEMS PD
- 2013/04 - 2014/03 RIKEN CEMS PD
- 2009/04 - 2013/03 RIKEN Computational Condensed Matter Physics Laboratory PD
- 2008/08 - 2009/03 University of Tokyo Department of Physics PD
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Awards (5):
- 2023/07 - SCES 2023 Best Poster Award Theory of BCS-BEC Crossover in Strongly-Correlated Electron Systems: Organic Superconductors and Cuprates
- 2020/03 - 日本物理学会 領域7 若手奨励賞 電荷自由度と幾何学的フラストレーションがもたらす新奇相の理論的研究
- 2019 - 理化学研究所 桜舞賞(研究奨励賞) 分子性物質の超伝導発現機構の理論的研究
- 2012 - RIKEN Research Incentive Award
- 2006 - Journal of the Physical Society of Japan Paper's of Editor's Choice
Association Membership(s) (1):
The Physical Society of Japan
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