English

A Minimal tight-binding model for ferromagnetic canted bilayer manganites

Strongly Correlated Electrons 2014-12-22 v1

Abstract

Half-metallicity in materials has been a subject of extensive research due to its potential for applications in spintronics. Ferromagnetic manganites have been seen as a good candidate, and aside from a small minority-spin pocket observed in La22x_{2-2x}Sr1+2x_{1+2x}Mn2_{2}O7_{7} (x=0.38)(x=0.38), transport measurements show that ferromagnetic manganites essentially behave like half metals. Here we develop robust tight-binding models to describe the electronic band structure of the majority as well as minority spin states of ferromagnetic, spin-canted antiferromagnetic, and fully antiferromagnetic bilayer manganites. Both the bilayer coupling between the MnO2_2 planes and the mixing of the x2y2>|x^2 - y^2> and 3z2r2>|3z^2 - r^2> Mn 3d orbitals play an important role in the subtle behavior of the bilayer splitting. Effects of kzk_z dispersion are included.

Keywords

Cite

@article{arxiv.1412.4728,
  title  = {A Minimal tight-binding model for ferromagnetic canted bilayer manganites},
  author = {M. Baublitz and C. Lane and Hsin Lin and Hasnain Hafiz and R. S. Markiewicz and B. Barbiellini and Z. Sun and D. S. Dessau and A. Bansil},
  journal= {arXiv preprint arXiv:1412.4728},
  year   = {2014}
}

Comments

18 pages, and 6 figures

R2 v1 2026-06-22T07:32:15.652Z