TY - JOUR
T1 - Effects of hole doping and electron-phonon interaction on the electronic structure of Ba1-xKxBiO3 studied by photoemission spectroscopy
AU - Namatame, H.
AU - Fujimori, A.
AU - Torii, H.
AU - Uchida, T.
AU - Nagata, Y.
AU - Akimitsu, J.
PY - 1994
Y1 - 1994
N2 - The electronic structure of Ba1-xKxBiO3 has been studied by photoemission spectroscopy. With increasing x, the spectra are generally shifted towards the Fermi level (EF), indicating a downward shift of EF due to hole doping. The magnitudes of the shifts, however, are substantially smaller than those predicted by band-structure calculations. In the cubic metallic phase, although band-structure calculations on the cubic structure predict the density of states (DOS) to show a peak at or close to EF, the photoemission intensity decreases towards EF, suggesting that the splitting of the Bi 6s band persists and results in a pseudogap behavior. We propose that the suppression of the DOS peak at EF is caused by dynamical lattice distortion: The DOS peak predicted for the cubic structure presumably induces the lattice instability, leading to the dynamical lattice distortion.
AB - The electronic structure of Ba1-xKxBiO3 has been studied by photoemission spectroscopy. With increasing x, the spectra are generally shifted towards the Fermi level (EF), indicating a downward shift of EF due to hole doping. The magnitudes of the shifts, however, are substantially smaller than those predicted by band-structure calculations. In the cubic metallic phase, although band-structure calculations on the cubic structure predict the density of states (DOS) to show a peak at or close to EF, the photoemission intensity decreases towards EF, suggesting that the splitting of the Bi 6s band persists and results in a pseudogap behavior. We propose that the suppression of the DOS peak at EF is caused by dynamical lattice distortion: The DOS peak predicted for the cubic structure presumably induces the lattice instability, leading to the dynamical lattice distortion.
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U2 - 10.1103/PhysRevB.50.13674
DO - 10.1103/PhysRevB.50.13674
M3 - Article
AN - SCOPUS:0001737631
SN - 0163-1829
VL - 50
SP - 13674
EP - 13678
JO - Physical Review B
JF - Physical Review B
IS - 18
ER -