Persistence of small polarons into the superconducting doping range of Ba1−xKxBiO3
Muntaser Naamneh, Eric C. O’Quinn, Eugenio Paris, Daniel McNally, Yi Tseng, Wojciech R. Pudełko, Dariusz J. Gawryluk, Jacob Shamblin, Benjamin Cohen-Stead, Ming Shi, Milan Radovic, Maik K. Lang, Thorsten Schmitt, Steven Johnston, Nicholas C. Plumb
DOI 10.1103/s3p1-cy1s · Physical Review Research
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Abstract
Bipolaronic superconductivity is an exotic pairing mechanism proposed for materials like Ba1−xKxBiO3 (BKBO); however, conclusive experimental evidence for a (bi)polaron metallic state in this material remains elusive. Here, we combine resonant inelastic x-ray and neutron total scattering techniques with advanced modeling to study the local lattice distortions, electronic structure, and electron-phonon (e−ph) coupling in BKBO as a function of doping. Data for the parent compound (x=0) indicate that the electronic gap opens in predominantly oxygen-derived states strongly coupled to a long-range ordered breathing distortion of the oxygen sublattice. Upon doping, short-range breathing distortions and sizable e-ph coupling persist into the superconducting regime (x=0.4). Comparisons with exact diagonalization and determinant quantum Monte Carlo calculations further support this conclusion. Our results provide compelling evidence that BKBO’s metallic phase hosts a liquid of small (bi)polarons derived from local breathing distortions of the lattice, with implications for understanding the low-temperature superconducting instability.
Source-reported materials — not catalogue approval
| Formula | Reported Tc (K) | Pressure (GPa) | Type |
|---|---|---|---|
| Ba1-xKxBiO3 Archive — visibility unverified Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula. | 30 | Pressure not reported | onset |
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