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Magnetic Phases of Electron-Doped Manganites

Strongly Correlated Electrons 2016-08-31 v1

Abstract

We study the anisotropic magnetic structures exhibited by electron-doped manganites using a model which incorporates the double-exchange between orbital ly degenerate ege_{g} electrons and the super-exchange between t2gt_{2g} electrons with realistic values of the Hund's coupling(JHJ_H), the super-exchange coupling(JAFJ_{AF}), and the bandwidth(WW). We look at the relative stabilities of the G, C and A type antiferromagnetic ph ases. In particular we find that the G-phase is stable for low electron doping as seen in experiments. We find good agreement with the experimentally observed magnetic phase diagrams of electron-doped manganites (x>0.5x > 0.5) such as Nd1x_{1-x}Srx_{x}MnO3_{3}, Pr1x_{1-x}Srx_{x}MnO3_{3}, and Sm1x_{1-x}Cax_{x}MnO3_{3}. We can also explain the experimentally observed orbital structures of the C a nd A phases. We also extend our calculation for electron-doped bilayer manganites of the form R22x_{2-2x}A1+2x_{1+2x}Mn2_2O7_7 and predict that the C-phase will be absent in t hese systems due to their reduced dimensionality.

Keywords

Cite

@article{arxiv.cond-mat/0011273,
  title  = {Magnetic Phases of Electron-Doped Manganites},
  author = {G. Venketeswara Pai},
  journal= {arXiv preprint arXiv:cond-mat/0011273},
  year   = {2016}
}

Comments

7 .ps files included. To appear in Phys. Rev. B (Feb 2001)