English

Evolution of the SrTiO$_3$ surface electronic state as a function of LaAlO$_3$ overlayer thickness

Materials Science 2022-08-11 v2

Abstract

The novel electronic properties emerging at interfaces between transition metal oxides, and in particular the discovery of conductivity in heterostructures composed of LaAlO3_3 (LAO) and SrTiO3_3 (STO) band insulators, have generated new challenges and opportunities in condensed matter physics. Although the interface conductivity is stabilized when LAO matches or exceeds a critical thickness of 4 unit cells (u.c.), other phenomena such as a universal metallic state found on the bare surface of STO single crystals and persistent photon-triggered conductivity in otherwise insulating STO-based interfaces raise important questions about the role of the LAO overlayer and the possible relations between vacuum/STO and LAO/STO interfaces. Here, we study how the metallic STO surface state evolves using angle-resolved photoemission spectroscopy (ARPES) in situ prepared samples complemented by resonant inelastic X-ray scattering (RIXS) during the growth of a crystalline LAO overlayer. In all the studied samples, the character of the conduction bands, their carrier densities, the Ti3+ crystal field, and the response to photon irradiation bear strong similarities. Nevertheless, we report here that studied LAO/STO interfaces exhibit an instability toward an apparent 2 x 1 folding of the Fermi surface at and above 4 u.c. thickness threshold, which distinguishes these heterostructures from bare STO and sub-critical-thickness LAO/STO.

Keywords

Cite

@article{arxiv.1304.5948,
  title  = {Evolution of the SrTiO$_3$ surface electronic state as a function of LaAlO$_3$ overlayer thickness},
  author = {N. C. Plumb and M. Kobayashi and M. Salluzzo and E. Razzoli and C. Matt and V. N. Strocov and K. -J. Zhou and C. Monney and T. Schmitt and M. Shi and J. Mesot and L. Patthey and M. Radovic},
  journal= {arXiv preprint arXiv:1304.5948},
  year   = {2022}
}