English

Tuning a Strain-Induced Orbital Selective Mott Transition in Epitaxial VO$_2$

Strongly Correlated Electrons 2016-06-29 v2 Materials Science

Abstract

We present evidence of strain-induced modulation of electron correlation effects and increased orbital anisotropy in the rutile phase of epitaxial VO2_2/TiO2_2 films from hard x-ray photoelectron spectroscopy and soft V L-edge x-ray absorption spectroscopy, respectively. By using the U(1) slave spin formalism, we further argue that the observed anisotropic correlation effects can be understood by a model of orbital selective Mott transition at a filling that is non-integer, but close to the half-filling. Because the overlaps of wave functions between dd orbitals are modified by the strain, orbitally-dependent renormalizations of the bandwidths and the crystal fields occur with the application of strain. These renormalizations generally result in different occupation numbers in different orbitals. We find that if the system has a non-integer filling number near the half-filling such as for VO2_2, certain orbitals could reach an occupation number closer to half-filling under the strain, resulting in a strong reduction in the quasiparticle weight ZαZ_{\alpha} of that orbital. Moreover, an orbital selective Mott transition, defined as the case with Zα=0Z_{\alpha} = 0 in some, but not all orbitals, could be accessed by epitaxial strain-engineering of correlated electron systems.

Keywords

Cite

@article{arxiv.1603.00485,
  title  = {Tuning a Strain-Induced Orbital Selective Mott Transition in Epitaxial VO$_2$},
  author = {Shantanu Mukherjee and N. F. Quackenbush and H. Paik and C. Schlueter and T. -L. Lee and D. G. Schlom and L. F. J. Piper and Wei-Cheng Lee},
  journal= {arXiv preprint arXiv:1603.00485},
  year   = {2016}
}

Comments

7 pages, 6 figures. First two authors contribute equally