English

Lattice-form dependent orbital shape and charge disproportionation in charge- and orbital-ordered manganites

Strongly Correlated Electrons 2009-10-17 v1

Abstract

The orbital shapes and charge disproportionations at nominal Mn3+^{3+} and Mn4+^{4+} sites for the charge- and orbital-ordered phases have been studied on half-doped manganites Pr(Sr0.1_{0.1}Ca0.9_{0.9})2_2Mn2_2O7_7 and Eu0.5_{0.5}Ca1.5_{1.5}MnO4_4 with double-layer and single-layer Mn-O networks, respectively, by means of x-ray structural analyses, in comparison with Pr0.5_{0.5}Ca0.5_{0.5}MnO3_3 with the pseudo cubic network. In a single-layer Eu0.5_{0.5}Ca1.5_{1.5}MnO4_4 system, the (y2z2y^2-z^2)/(z2x2z^2-x^2)-type orbital shape is observed, while the (3y2r23y^2-r^2)/(3x2r23x^2-r^2)-type orbital shape in a pseudo cubic Pr0.5_{0.5}Ca0.5_{0.5}MnO3_3 system. In a double-layer Pr(Sr0.1_{0.1}Ca0.9_{0.9})2_2Mn2_2O7_7 system, the orbital shape is found to undergo a large change upon thermally induced rotation of orbital stripe. Furthermore, clear charge disproportionation is observed for the pseudo cubic and double-layer systems, while not in the single-layer system. These results indicate that the orbital shape and charge disproportionation are sensitive to the dimension of Mn-O network.

Keywords

Cite

@article{arxiv.0907.1167,
  title  = {Lattice-form dependent orbital shape and charge disproportionation in charge- and orbital-ordered manganites},
  author = {D. Okuyama and Y. Tokunaga and R. Kumai and Y. Taguchi and T. Arima and Y. Tokura},
  journal= {arXiv preprint arXiv:0907.1167},
  year   = {2009}
}

Comments

12 page, 5 figures, 11 tables