English

Quasiparticle Interference in the Unconventional Metamagnetic Compound Sr$_3$Ru$_2$O$_7$

Strongly Correlated Electrons 2010-05-05 v5 Materials Science

Abstract

Quasiparticle interference (QPI) in spectroscopic imaging scanning tunneling microscopy provides a powerful method to detect orbital band structures and orbital ordering patterns in transition metal oxides. We use the TT-matrix formalism to calculate the QPI spectra for the unconventional metamagnetic system of Sr3_3Ru2_2O7_7 with a t2gt_{2g}-orbital band structure. A detailed tight-binding model is constructed accounting for features such as spin-orbit coupling, bilayer splitting, and the staggered rotation of the RuO octahedra. The band parameters are chosen by fitting the calculated Fermi surfaces with those measured in the angular-resolved photo-emission spectroscopy experiment. The calculated quasiparticle interference at zero magnetic field exhibits a hollow square-like feature arising from the nesting of the quasi-1d dxzd_{xz} and dyzd_{yz} orbital bands, in agreement with recent measurements by J. Lee {\it et al.} (Nature Physics {\bf 5}, 800 (2009)). Rotational symmetry breaking in the nematic metamagnetic state also manifests in the quasi-particle interference spectra.

Keywords

Cite

@article{arxiv.1002.4079,
  title  = {Quasiparticle Interference in the Unconventional Metamagnetic Compound Sr$_3$Ru$_2$O$_7$},
  author = {Wei-Cheng Lee and D. P. Arovas and Congjun Wu},
  journal= {arXiv preprint arXiv:1002.4079},
  year   = {2010}
}

Comments

13 pages, 12 figures, New refrences are added, and some typos are corrected. Published version