Prediction of BaBiO3-like superconducting perovskites in K-doped SrAsO3
Zhihong Yuan, Rui Liu, Pengyu Zheng, Zhiping Yin
Abstract
Using first-principles calculations, we predict a new perovskite compound SrAsO3 . The undoped cubic phase has pronounced soft-phonon instabilities, which are gradually suppressed upon K doping the Sr site. The cubic phase becomes dynamically stable for K-doping levels above approximately 60%, and the stabilized K-doped phases are metallic with predicted conventional phonon mediated superconductivity. Moreover, the inclusion of nonlocal exchange interactions broadens the electronic bandwidth, enhances the electron-phonon coupling (EPC) strength, and increases the superconducting transition temperature (Tc) of these doped compounds. In particular, the HSE06 hybrid exchange-correlation functional corrected EPC constant λ reaches 1.41 for Sr0.4K0.6AsO3, corresponding to a predicted Tc of 44.3 K. These results suggest that SrAsO3 is a BaBiO3-like superconducting perovskite driven by strong electron-phonon coupling.
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