English

Charge order induced in an orbital density-wave state

Strongly Correlated Electrons 2017-06-29 v2

Abstract

Motivated by the recent ARPES measurements (Evtushinsky et. al., PRL {\bf 105}, 147201 (2010)) and evidence for the density-wave state for the charge and orbital ordering (Garc\'{i}a et al., PRL {\bf 109}, 107202 (2012)) in La0.5_{0.5}Sr1.5_{1.5}MnO4_4, the issue of charge and orbital ordering in a two orbital tight-binding model for layered manganite near half doping is revisited. We find that the charge order with an ordering wavevector 2Q{\bf Q} = (π,π)(\pi, \pi) is induced by the orbital order of B1gB_{1g} representation with a different ordering wavevector Q{\bf Q}, where the primary order parameter results from the strong Fermi-surface nesting. The orbital and charge order parameters develop according to TCOT\sqrt{T_{CO}-T} and TCOTT_{CO}-T, respectively, by decreasing the temperature below the orbital ordering temperature TCOT_{CO}. Moreover, the orbital order is found to stabilize the CE-type spin arrangement observed experimentally below TCE<TCOT_{CE} < T_{CO}.

Keywords

Cite

@article{arxiv.1412.3193,
  title  = {Charge order induced in an orbital density-wave state},
  author = {Dheeraj Kumar Singh and Tetsuya Takimoto},
  journal= {arXiv preprint arXiv:1412.3193},
  year   = {2017}
}
R2 v1 2026-06-22T07:26:03.296Z