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High-temperature superconductivity at high pressures for H3SixP1−x, H3PxS1−x, and H3ClxS1−x

Publication ,  Journal Article
Fan, F; Papaconstantopoulos, DA; Mehl, MJ; Klein, BM
Published in: Journal of Physics and Chemistry of Solids
December 1, 2016

Recent experimental and computational works have established the occurrence of superconducting temperatures, Tc, near 200 K when the pressure is close to 200 GPa in hydrogen-based sulfur compounds. In this work we investigate the effects of phosphorus and chlorine substitutions of sulfur on Tc, as well as the effect of hydrogen vacancies. In addition, we explore the superconductivity-relevant parameters in the H3SixP1−x system. In executing this work we used the virtual crystal approximation and performed a systematic set of linearized augmented plane wave calculations (LAPW) for many different concentrations of the sulfur component. From the densities of states and the scattering phase shifts at the Fermi level, we calculated electron-ion matrix elements and estimated the electron-phonon coupling constants for different concentrations, as well as Tc. We find that the highest value of Tc=197 K corresponds to a phosphorus concentration of x=0.15, or 8.85 valence electrons in a H3P0.15S0.85 alloy. From a detailed analysis of the results given by a Gaspari–Gyorffy (GG) determination of the Hopfield parameter, we identify the role of each term in the GG equation that produce the maximum Tc. In addition, we present a non-orthogonal tight-binding parameterization of the band structure of H3S which fits very well with the LAPW results.

Duke Scholars

Published In

Journal of Physics and Chemistry of Solids

DOI

ISSN

0022-3697

Publication Date

December 1, 2016

Volume

99

Start / End Page

105 / 110

Related Subject Headings

  • Physical Chemistry
  • 5104 Condensed matter physics
  • 3403 Macromolecular and materials chemistry
  • 3402 Inorganic chemistry
  • 0912 Materials Engineering
  • 0306 Physical Chemistry (incl. Structural)
  • 0204 Condensed Matter Physics
 

Citation

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Fan, F., Papaconstantopoulos, D. A., Mehl, M. J., & Klein, B. M. (2016). High-temperature superconductivity at high pressures for H3SixP1−x, H3PxS1−x, and H3ClxS1−x. Journal of Physics and Chemistry of Solids, 99, 105–110. https://doi.org/10.1016/j.jpcs.2016.08.007
Fan, F., D. A. Papaconstantopoulos, M. J. Mehl, and B. M. Klein. “High-temperature superconductivity at high pressures for H3SixP1−x, H3PxS1−x, and H3ClxS1−x.” Journal of Physics and Chemistry of Solids 99 (December 1, 2016): 105–10. https://doi.org/10.1016/j.jpcs.2016.08.007.
Fan F, Papaconstantopoulos DA, Mehl MJ, Klein BM. High-temperature superconductivity at high pressures for H3SixP1−x, H3PxS1−x, and H3ClxS1−x. Journal of Physics and Chemistry of Solids. 2016 Dec 1;99:105–10.
Fan, F., et al. “High-temperature superconductivity at high pressures for H3SixP1−x, H3PxS1−x, and H3ClxS1−x.” Journal of Physics and Chemistry of Solids, vol. 99, Dec. 2016, pp. 105–10. Scopus, doi:10.1016/j.jpcs.2016.08.007.
Fan F, Papaconstantopoulos DA, Mehl MJ, Klein BM. High-temperature superconductivity at high pressures for H3SixP1−x, H3PxS1−x, and H3ClxS1−x. Journal of Physics and Chemistry of Solids. 2016 Dec 1;99:105–110.
Journal cover image

Published In

Journal of Physics and Chemistry of Solids

DOI

ISSN

0022-3697

Publication Date

December 1, 2016

Volume

99

Start / End Page

105 / 110

Related Subject Headings

  • Physical Chemistry
  • 5104 Condensed matter physics
  • 3403 Macromolecular and materials chemistry
  • 3402 Inorganic chemistry
  • 0912 Materials Engineering
  • 0306 Physical Chemistry (incl. Structural)
  • 0204 Condensed Matter Physics