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Isostructural Metal-Insulator Transition Driven by Dimensional-Crossover in SrIrO3 Heterostructures

Strongly Correlated Electrons 2022-04-05 v1

Abstract

Dimensionality reduction induced metal-insulator transitions in oxide heterostructures are usually coupled with structural and magnetic phase transitions, which complicate the interpretation of the underlying physics. Therefore, achieving isostructural MIT is of great importance for fundamental physics and even more for applications. Here, we report an isostructural metal-insulator transition driven by dimensional-crossover in spin-orbital coupled SrIrO3 films. By using in-situ pulsed laser deposition and angle-resolved photoemission spectroscopy, we synthesized and investigated the electronic structure of SrIrO3 ultrathin films with atomic-layer precision. Through inserting orthorhombic CaTiO3 buffer layers, we demonstrate that the crystal structure of SrIrO3 films remains bulk-like with similar oxygen octahedra rotation and tilting when approaching the ultrathin limit. We observe that a dimensional-crossover metal-insulator transition occurs in isostructural SrIrO3 films. Intriguingly, we find the bandwidth of Jeff=3/2 states reduces with lowering the dimensionality and drives the metal-insulator transition. Our results establish a bandwidth controlled metal-insulator transition in the isostructural SrIrO3 thin films.

Keywords

Cite

@article{arxiv.2109.02056,
  title  = {Isostructural Metal-Insulator Transition Driven by Dimensional-Crossover in SrIrO3 Heterostructures},
  author = {Shuai Kong and Lei Li and Zengxing Lu and Jiatai Feng and Xuan Zheng and Pengbo Song and You-guo Shi and Yumei Wang and Binghui Ge and Katharina Rolfs and Ekaterina Pomjakushina and Thorsten Schmitt and Nicholas C. Plumb and Ming Shi and Zhicheng Zhong and Milan Radovic and Zhiming Wang and Run-Wei Li},
  journal= {arXiv preprint arXiv:2109.02056},
  year   = {2022}
}