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Predicted High-Temperature Superconducting State in the Hydrogen-Dense Transition-Metal Hydride YH3 at 40 K and 17.7 GPa

Duck Young Kim, Ralph H. Scheicher, Rajeev Ahuja

DOI 10.1103/PhysRevLett.103.077002 · Physical Review Letters

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Abstract

Metallization in pure hydrogen has been proposed to give rise to high-temperature superconductivity at pressures which still lie beyond the reach of contemporary experimental techniques. Hydrogen-dense materials offer an opportunity to study related phenomena at experimentally achievable pressures. Here we report the prediction of high-temperature superconductivity in yttrium hydride (YH3), with a Tc of 40 K at 17.7 GPa, the lowest reported pressure for hydrogen-dense materials to date. Specifically, we find that the face-centered cubic structure of YH3 exhibits superconductivity of different origins in two pressure regions. The evolution of Tc with pressure follows the corresponding change of s−d hybridization between H and Y, due to an enhancement of the electron-phonon coupling by a matching of the energy level from Y-H vibrations with the peak of the s electrons from the octahedrally coordinated hydrogen atoms.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
YH3

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4017.7 GPaunknown
GeH4

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Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula.

64220 GPaunknown
SnH4

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Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula.

80120 GPaunknown

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