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Orbital Dependent Phase Control in Ca2-xSrxRuO4

Strongly Correlated Electrons 2009-11-10 v1 Materials Science

Abstract

We present first-principles studies on the orbital states of the layered perovskites Ca2x_{2-x}Srx_xRuO4_4. The crossover from antiferromagnetic (AF) Mott insulator for x<0.2x < 0.2 to nearly ferromagnetic (FM) metal at x=0.5x=0.5 is characterized by the systematic change of the xyxy orbital occupation. For the AF side (x<0.2x < 0.2), we present firm evidence for the xyxy ferro-orbital ordering. It is found that the degeneracy of t2gt_{2g} (or ege_g) states is lifted robustly due to the two-dimensional (2D) crystal-structure, even without the Jahn-Teller distortion of RuO6_6. This effect dominates, and the cooperative occupation of xyxy orbital is concluded. In contrast to recent proposals, the resulting electronic structure explains well both the observed X-ray absorption spectra and the double peak structure of optical conductivity. For the FM side (x=0.5x=0.5), however, the xyxy orbital with half filling opens a pseudo-gap in the FM state and contributes to the spin SS=1/2 moment (rather than SS=1 for xx=0.0 case) dominantly, while yz,zxyz,zx states are itinerant with very small spin polarization, explaining the recent neutron data consistently.

Keywords

Cite

@article{arxiv.cond-mat/0402122,
  title  = {Orbital Dependent Phase Control in Ca2-xSrxRuO4},
  author = {Zhong Fang and Naoto Nagaosa and Kiyoyuki Terakura},
  journal= {arXiv preprint arXiv:cond-mat/0402122},
  year   = {2009}
}

Comments

17 pages, 5 figures

R2 v1 2026-07-22T10:59:31.456Z