English

Strain control of the metal-insulator transition in epitaxial SrCrO$_{3}$ thin films

Materials Science 2021-04-08 v1

Abstract

In the perovskite oxide SrCrO3_{3} the interplay between crystal structure, strain and orbital ordering enables a transition from a metallic to an insulating electronic structure under certain conditions. We identified a narrow window of oxygen partial pressure in which highly strained SrCrO3_{3} thin films can be grown using radio-frequency (RF) off-axis magnetron sputtering on three different substrates, (LaAlO3_{3})0.3_{0.3}-(Sr2_{2}TaAlO6_{6})0.7_{0.7} (LSAT), SrTiO3_{3} (STO) and DyScO3_{3} (DSO). X-ray diffraction and atomic force microscopy confirmed the quality of the films and a metal-insulator transition driven by the substrate induced strain was demonstrated.

Keywords

Cite

@article{arxiv.2104.02738,
  title  = {Strain control of the metal-insulator transition in epitaxial SrCrO$_{3}$ thin films},
  author = {Giulia Bertino and Hsiang-Chun Hsing and Anna Gura and Xinzhong Chen and Theodore Sauyet and Mengkun Liu and Chang-Yong Nam and Matthew Dawber},
  journal= {arXiv preprint arXiv:2104.02738},
  year   = {2021}
}