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Research Subjects
Search for novel physical phenomena under high-pressure
Study of the pressure-induced quantum phase transition
Development of high-pressure apparatus and establishment of physical property measurement techniques under the multi extreme conditions
The high-pressure group has been studying various materials under high-pressure conditions in combination with low temperature and/or high magnetic field. Combination of such multiple extreme conditions is becoming popular and indispensable for research in solid state physics. However, the developments of techniques that can realize in-situ measurements under multiple extreme conditions are often challenging and require sophisticated considerations. This group has persistently devoted numerous efforts in developing such advanced high-pressure techniques and in turn have become successful studying the strongly correlated electronic systems, which is one of the most important themes in modern condensed matter physics research. Since many mysterious phenomena in strongly correlated electronic systems results from a delicate interplay of multiple energy scales involving electron-phonon, electron-electron interactions as well as orbital degrees of freedom, we foresee the discovery of many unknown exotic phenomena under multi-extreme conditions. Besides, high pressure offers an effective knob in tuning the inter-atomic distances and the density of electronic states at the Fermi level, which are crucial for controlling the complex interactions present in correlated materials in a much cleaner way.
Search for novel physical phenomena under high-pressure
Study of the pressure-induced quantum phase transition
Development of high-pressure apparatus and establishment of physical property measurement techniques under the multi extreme conditions
The high-pressure group has been studying various materials under high-pressure conditions in combination with low temperature and/or high magnetic field. Combination of such multiple extreme conditions is becoming popular and indispensable for research in solid state physics. However, the developments of techniques that can realize in-situ measurements under multiple extreme conditions are often challenging and require sophisticated considerations. This group has persistently devoted numerous efforts in developing such advanced high-pressure techniques and in turn have become successful studying the strongly correlated electronic systems, which is one of the most important themes in modern condensed matter physics research. Since many mysterious phenomena in strongly correlated electronic systems results from a delicate interplay of multiple energy scales involving electron-phonon, electron-electron interactions as well as orbital degrees of freedom, we foresee the discovery of many unknown exotic phenomena under multi-extreme conditions. Besides, high pressure offers an effective knob in tuning the inter-atomic distances and the density of electronic states at the Fermi level, which are crucial for controlling the complex interactions present in correlated materials in a much cleaner way.
Research Interests
Papers共 1096 篇Author StatisticsCo-AuthorSimilar Experts
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Wei-Tin Chen,Takumi Nishikubo,Yuki Sakai,Hena Das, Masayuki Fukuda,Zhao Pan,Naoki Ishimatsu,Masaichiro Mizumaki, Naomi Kawamura, Saori I Kawaguchi,Olga Smirnova, Mathew G Tucker,Tetsu Watanuki,Akihiko Machida, Shigehiro Takajo,Yoshiya Uwatoko,Yuichi Shimakawa,Mikio Takano,Masaki Azuma,J Paul Attfield
Nature communicationsno. 1 (2025): 2128-2128
Takeshi Kanomata,Xiao Xu,Takuo Sakon, Yuki Nagata,Shin Imada,Toshihiro Omori,Ryosuke Kainuma,Tetsujiro Eto,Yoshiya Adachi,Takumi Kihara,Yasushi Amako, Masaaki Doi,Yoshiya Uwatoko
Metalsno. 2 (2025): 215
Taiki Morimoto, Etsuji Morikawa,Katsuki Nihongi,Takanori Kida,Yasuo Narumi,Zentaro Honda,Shunsuke Furukawa,Yoshiya Uwatoko,Koichi Kindo,Masayuki Hagiwara
Journal of the Physical Society of Japanno. 2 (2025)
The Review of scientific instrumentsno. 4 (2025)
Sanskar Mishra, Nagendra Singh, V. K. Gangwar, Rajan Walia,Manindra Kumar, Udai Bhan Singh, Deepash Sekhar Saini,Jianping Sun,Genfu Chen,Dilip Bhoi,Sandip Chatterjee,Yoshiya Uwatoko,Jinguang Cheng, Prashant Shahi
arxiv(2025)
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0
Hayato Muto,Tomohito Nakano, Tatsuya Watanabe,Ryota Takahashi,Naoya Takeda,Jun Gouchi,Yoshiya Uwatoko,Michal Dusek,Jan Prokleska,Jiri Pospisil,Vladimir Sechovsky
JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS (2025)
Lifen Shi,Keyuan Ma, Jingyu Hou, Pan Ying, Ningning Wang, Xiaojun Xiang, Pengtao Yang,Xiaohui Yu,Huiyang Gou, Jianping Sun,Yoshiya Uwatoko,Fabian O. von Rohr,Xiang-Feng Zhou,Bosen Wang,Jinguang Cheng
arxiv(2025)
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0
0
Qingxin Dong, Tong Shi, Pengtao Yang, Xinyang Liu, Xiaofan Shi,Lei Wang,Junsen Xiang, Hanming Ma,Zhaoming Tian, Jianping Sun,Yoshiya Uwatoko,Genfu Chen, Xinbo Wang,Jie Shen,Rui Wu, Xin Lu,Peijie Sun,Grzegorz Chajewski,Dariusz Kaczorowski,Bosen Wang,Jinguang Cheng
arxiv(2025)
Cited0Views0Bibtex
0
0
Wei-Tin Chen, Takumi Nishikubo,Yuki Sakai,Hena Das, Masayuki Fukuda,Zhao Pan,Naoki Ishimatsu,Masaichiro Mizumaki,Naomi Kawamura, Saori I Kawaguchi, Olga Smirnova, Mathew G Tucker,Tetsu Watanuki,Akihiko Machida, Shigehiro Takajo,Yoshiya Uwatoko,Yuichi Shimakawa,Mikio Takano,Masaki Azuma,J Paul Attfield
Nature communicationsno. 1 (2025): 2713-2713
Chris J. Lygouras, Junyi Zhang, Jonah Gautreau,Mathew Pula,Sudarshan Sharma,Shiyuan Gao,Tanya Berry,Thomas Halloran, Peter Orban,Gael Grissonnanche,Juan R. Chamorro,Taketora Mikuri,Dilip K. Bhoi,Maxime A. Siegler,Kenneth J. T. Livi,Yoshiya Uwatoko,Satoru Nakatsuji,B. J. Ramshaw,Yi Li,Graeme M. Luke,Collin L. Broholm,Tyrel M. Mcqueen
MATERIALS ADVANCES (2025)
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Author Statistics
#Papers: 1100
#Citation: 16421
H-Index: 55
G-Index: 84
Sociability: 8
Diversity: 3
Activity: 127
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