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Elbio Dagotto primarily uses computational techniques to study transition metal oxides, oxide interfaces, and the recently discovered iron based, high-temperature superconductors. These materials and others studied by his group show promise both for technological applications and for advancing fundamental concepts in condensed matter physics.
Dagotto has several active collaborations with ORNL scientists working with materials from manganese oxides to iron based high temperature superconductors. Additionally, he serves as principal investigator of a DOE Field Work Proposal, FWP, at ORNL, entitled “Theoretical studies of Complex Collective Phenomena,” which secured a grant from the Department of Energy that supplied $1.9 million for 18 months to ORNL.
Dagotto has several active collaborations with ORNL scientists working with materials from manganese oxides to iron based high temperature superconductors. Additionally, he serves as principal investigator of a DOE Field Work Proposal, FWP, at ORNL, entitled “Theoretical studies of Complex Collective Phenomena,” which secured a grant from the Department of Energy that supplied $1.9 million for 18 months to ORNL.
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A. O. Scheie,Minseong Lee, Kevin Wang, P. Laurell,E. S. Choi, D. Pajerowski, Qingming Zhang, Jie Ma,H. D. Zhou,Sangyun Lee,S. M. Thomas,M. O. Ajeesh,
arxiv(2024)
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arXiv (Cornell University)no. 2 (2024)
Physical Review Bno. 15 (2024)
PHYSICAL REVIEW Bno. 15 (2024)
NATURE COMMUNICATIONSno. 1 (2024): 2470-2470
Han Wang,Ryoma Kaneko, Kentaro Ueda, Yang Zhang,Alfred Q R Baron,Daisuke Ishikawa, Björn Wehinger,Elbio Dagotto,Yoshinori Tokura,Taka-Hisa Arima,Shang Gao
Journal of physics. Condensed matter : an Institute of Physics journalno. 42 (2024)
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