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Search for high T<sub>c</sub> superconductors at ambient pressure

POSTER

Abstract

Room temperature superconductivity has been an elusive dream of many scientists. Hydride materials have been shown to exhibit record Tcs under extreme conditions, however lowering required pressures remains a grand challenge. Recent predictions for Mg2IrH6 suggest very high transition temperatures may be possible at ambient pressure (up to 160 K). In this work we discuss recent experimental progress in the synthesis of Mg2IrH6 and related materials, including Mg2IrH5, which is insulating yet isostructural with Mg2IrH6 expect for one missing hydrogen.

[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

  • Shubham Sinha

    Earth and Planets Laboratory, Carnegie Institution for Science

Authors

  • Shubham Sinha

    Earth and Planets Laboratory, Carnegie Institution for Science

  • Wencheng Lu

    Earth and Planets Laboratory, Carnegie Institution for Science

  • Timothy Strobel

    Earth and Planets Laboratory, Carnegie Institution for Science

  • Mads Hansen

    Earth and Planets and Laboratory, Carnegie Institution for Science

  • Kapildeb Dolui

    Department of Materials Science and Metallurgy, University of Cambridge, 27 Charles Babbage Road, Cambridge, CB3 0FS, UK

  • Lewis J Conway

    Univ of Cambridge

  • Christoph Heil

    Graz University of Technology

  • Rohit P Prasankumar

    Enterprise Science Fund, Intellectual Ventures, 3150 139th Ave SE, Bellevue, WA, 98005, USA

  • Chris J Pickard

    University of Cambridge

  • Matthew Julian

    Enterprise Science Fund, Intellectual Ventures, 3150 139th Ave SE, Bellevue, WA, 98005, USA