Search for high-Tc conventional superconductivity at megabar pressures in the lithium-sulfur system
arXiv:1605.07564 · doi:10.1103/PhysRevB.94.060502
Abstract
Motivated by the recent report of superconductivity above 200 K in ultra-dense hydrogen sulfide, we search for high-\tc\ conventional superconductivity in the phase diagram of the binary Li-S system, using {\em ab-initio} methods for crystal structure prediction and linear response calculations for the electron-phonon coupling. We find that at pressures higher than 20 GPa, several new compositions, besides the known LiS, are stabilized; many exhibit electride-like {\em interstitial} charge localization observed in other alkali metal compounds. Of all predicted phases, only LiS at P > 640 GPa displays a sizable \tc, in contrast to what is observed in sulfur and phosphorus hydrides, where several stoichiometries lead to high \tc. We attribute this difference to 2-2 hybridization and avoided core overlap, and predict similar behavior for other alkali metal compounds.
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- The road to room-temperature conventional superconductivity
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- Ab-initio prediction of the high-pressure phase diagram of BaBiO3
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