Electronic Structure of Doped Lanthanum Cuprates Studied with Resonant Inelastic X-Ray Scattering
Abstract
We report a comprehensive Cu -edge RIXS investigation of (LSCO) for 0x0.35, stripe-ordered (LBCO), and (LCNO) crystals. The RIXS spectra measured at three high-symmetry momentum transfer (\textbf{q}) positions are compared as a function of doping and for the different dopants. The spectra in the energy range 1-6 eV can be described with three broad peaks, which evolve systematically with increased doping. The most systematic trend was observed for \textbf{q}=(, 0) corresponding to the zone boundary. As hole doping increased, the spectral weight transfer from high energies to low energies is nearly linear with \emph{x} at this \textbf{q}. We interpret the peaks as interband transitions in the context of existing band models for this system, assigning them to Zhang-Rice bandupper Hubbard band, lower-lying bandupper Hubbard band, and lower-lying bandZhang-Rice band transitions. The spectrum of stripe-ordered LBCO was also measured, and found to be identical to the correspondingly doped LSCO, except for a relative enhancement of the near-infrared peak intensity around 1.5-1.7 eV. The temperature dependence of this near-infrared peak in LBCO was more pronounced than for other parts of the spectrum, continuously decreasing in intensity as the temperature was raised from 25 K to 300 K. Finally, we find that 4\% Ni substitution in the Cu site has a similar effect on the spectra as does Sr substitution in the La site.
Keywords
Cite
@article{arxiv.1101.3044,
title = {Electronic Structure of Doped Lanthanum Cuprates Studied with Resonant Inelastic X-Ray Scattering},
author = {D. S. Ellis and Jungho Kim and Harry Zhang and J. P. Hill and Genda Gu and Seiki Komiya and Yoichi Ando and D. Casa and T. Gog and Young-June Kim},
journal= {arXiv preprint arXiv:1101.3044},
year = {2015}
}
Comments
10 pages (according to my pdf), 8 figures. Was accepted for publication in PRB. When I did the preview in the previous step, somehow figure 2 looked very broken into pieces ?