English

Symmetry breaking at the (111) interfaces of SrTiO${_3}$ hosting a 2D-electron system

Materials Science 2018-10-03 v2

Abstract

We used x-ray absorption spectroscopy to study the orbital symmetry and the energy band splitting of (111) LaAlO3{_3}/SrTiO3{_3} and LaAlO3{_3}/EuTiO3{_3}/SrTiO3{_3} heterostructures, hosting a quasi two-dimensional electron system (q2DES), and of a Ti-terminated (111) SrTiO3{_3} single crystal, also known to form a q2DES at its surface. We demonstrate that the bulk tetragonal Ti-3d D4{_4}h{_h} crystal field is turned into trigonal D3{_3}d{_d} crystal field in all cases. The symmetry adapted a1{_1}g{_g} and egπ{^\pi_g} orbitals are non-degenerate in energy and their splitting, \Delta, is positive at the bare STO surface but negative in the heterostructures, where the a1{_1}g{_g} orbital is lowest in energy. These results demonstrate that the interfacial symmetry breaking induced by epitaxial engineering of oxide interfaces has a dramatic effect on their electronic properties, and it can be used to manipulate the ground state of the q2DES.

Keywords

Cite

@article{arxiv.1806.10519,
  title  = {Symmetry breaking at the (111) interfaces of SrTiO${_3}$ hosting a 2D-electron system},
  author = {G. M. De Luca and R. Di Capua and E. Di Gennaro and A. Sambri and F. Miletto Granozio and G. Ghiringhelli and D. Betto and C. Piamonteze and N. B. Brookes and M. Salluzzo},
  journal= {arXiv preprint arXiv:1806.10519},
  year   = {2018}
}

Comments

6 pages article, plus 5 pages supplementary information