Search for high T<sub>c</sub> superconductors at ambient pressure
POSTER
Abstract
[1] A. Sanna, T. F. T. Cerqueira, Y.-W. Fang, I. Errea, A. Ludwig, and M. A. L. Marques, Prediction of ambient pressure conventional superconductivity above 80 K in hydride compounds, npj Comput. Mater. 10, 44 (2024).
[2] K. Dolui, L. J. Conway, C. Heil, T. A. Strobel, R. P. Prasankumar, and C. J. Pickard, Feasible route to high-temperature ambient-pressure hydride superconductivity, Phys. Rev. Lett. 132, 166001 (2024).
[3] F. Zheng, Z. Zhang, Z. Wu, S. Wu, Q. Lin, R. Wang, Y. Fang, C.-Z. Wang, V. Antropov, Y. Sun, and K.-M. Ho, Prediction of ambient pressure superconductivity in cubic ternary hydrides with MH6 octahedra, Mater. Today Phys. 42, 101374 (2024).
[4] M.F. Hansen, L.J. Conway, K. Dolui, C. Heil, C.J. Pickard, R.P. Prasankumar, T.A. Strobel, Synthesis of Mg2IrH5: A potential pathway to high-Tc superconductivity at ambient pressure, Phys. Rev. B, 110, 214513 (2024)
Presenters
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Shubham Sinha
Earth and Planets Laboratory, Carnegie Institution for Science
Authors
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Shubham Sinha
Earth and Planets Laboratory, Carnegie Institution for Science
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Wencheng Lu
Earth and Planets Laboratory, Carnegie Institution for Science
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Timothy Strobel
Earth and Planets Laboratory, Carnegie Institution for Science
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Mads Hansen
Earth and Planets and Laboratory, Carnegie Institution for Science
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Kapildeb Dolui
Department of Materials Science and Metallurgy, University of Cambridge, 27 Charles Babbage Road, Cambridge, CB3 0FS, UK
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Lewis J Conway
Univ of Cambridge
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Christoph Heil
Graz University of Technology
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Rohit P Prasankumar
Enterprise Science Fund, Intellectual Ventures, 3150 139th Ave SE, Bellevue, WA, 98005, USA
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Chris J Pickard
University of Cambridge
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Matthew Julian
Enterprise Science Fund, Intellectual Ventures, 3150 139th Ave SE, Bellevue, WA, 98005, USA