English

Engineered Mott ground state in LaTiO$_{3+\delta}$/LaNiO$_3$ heterostructure

Strongly Correlated Electrons 2016-02-17 v3 Materials Science

Abstract

In pursuit of creating cuprate-like electronic and orbital structures, artificial heterostructures based on LaNiO3_3 have inspired a wealth of exciting experimental and theoretical results. However, to date there is a very limited experimental understanding of the electronic and orbital states emerging after interfacial charge-transfer and their connections to the modified band structure at the interface. Towards this goal, we have synthesized a prototypical superlattice composed of correlated metal LaNiO3_3 and doped Mott insulator LaTiO3+δ_{3+\delta}, and investigated its electronic structure by resonant X-ray absorption spectroscopy combined with X-ray photoemission spectroscopy, electrical transport and theory calculations. The heterostructure exhibits interfacial charge-transfer from Ti to Ni sites giving rise to an insulating ground state with orbital polarization and ege_\textrm{g} orbital band splitting. Our findings demonstrate how the control over charge at the interface can be effectively used to create exotic electronic, orbital and spin states.

Keywords

Cite

@article{arxiv.1502.06920,
  title  = {Engineered Mott ground state in LaTiO$_{3+\delta}$/LaNiO$_3$ heterostructure},
  author = {Yanwei Cao and Xiaoran Liu and M. Kareev and D. Choudhury and S. Middey and D. Meyers and J. -W. Kim and P. Ryan and J. W. Freeland and J. Chakhalian},
  journal= {arXiv preprint arXiv:1502.06920},
  year   = {2016}
}

Comments

4 figures

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