G. Zampieri et al., ELECTRONIC-STRUCTURE OF CAMNOX WITH LESS-THAN-OR-EQUAL-TO-X-LESS-THAN-OR-EQUAL-TO-3.00 STUDIED WITH PHOTOEMISSION AND X-RAY-ABSORPTION SPECTROSCOPY, Physical review. B, Condensed matter, 58(7), 1998, pp. 3755-3761
We studied the electronic structure of ClaMnO(x) (2.66 less than or eq
ual to x less than or equal to 3.00) using x-ray photoemission and O 1
s x-ray-absorption spectroscopy. Analyzing the spectra of the two end
members with the configuration-interaction cluster model, we have dete
rmined all the main parameters of the electronic structure. We have fo
und that the ground states of CaMnO2.5 and CaMnO3 are highly covalent,
with approximately the same number of ligand holes per oxygen atom: 0
.22-0.23. The-main separations between the Mn 3d bands closest to the
Fermi level are of the order of 3 eV and the band gaps are of the char
ge-transfer type (U>Delta). The main effects of the oxygenation are th
e disappearance of the occupied e(g up arrow) band and an approximatel
y rigid shift of about 1 eV to lower energies of all the other Mn 3d b
ands. Finally, we discuss the most probable causes for the absence of
a metallic phase in CaMnOx.