English

Ionic liquid gating induced two superconductor-insulator phase transitions in spinel oxide Li$_{1 \pm x}$Ti$_2$O$_{4-\delta}$

Superconductivity 2021-04-14 v2

Abstract

The associations between emergent physical phenomena (e.g., superconductivity) and orbital, charge, and spin degrees of freedom of 3d3d electrons are intriguing in transition metal compounds. Here, we successfully manipulate the superconductivity of spinel oxide Li1±x_{1\pm x}Ti2_2O4δ_{4-\delta} (LTO) by ionic liquid gating. A dome-shaped superconducting phase diagram is established, where two insulating phases are disclosed both in heavily electron-doping and hole-doping regions. The superconductor-insulator transition (SIT) in the hole-doping region can be attributed to the loss of Ti valence electrons. In the electron-doping region, LTO exhibits an unexpected SIT instead of a metallic behavior despite an increase in carrier density. Furthermore, a thermal hysteresis is observed in the normal state resistance curve, suggesting a first-order phase transition. We speculate that the SIT and the thermal hysteresis stem from the enhanced 3d3d electron correlations and the formation of orbital ordering by comparing the transport and structural results of LTO with the other spinel oxide superconductor MgTi2_2O4_4, as well as analysing the electronic structure by first-principles calculations. Further comprehension of the detailed interplay between superconductivity and orbital ordering would contribute to the revealing of unconventional superconducting pairing mechanism.

Keywords

Cite

@article{arxiv.2101.03518,
  title  = {Ionic liquid gating induced two superconductor-insulator phase transitions in spinel oxide Li$_{1 \pm x}$Ti$_2$O$_{4-\delta}$},
  author = {Zhongxu Wei and Qian Li and Ben-Chao Gong and Xinjian Wei and Wei Hu and Zhuang Ni and Ge He and Mingyang Qin and Anna Kusmartseva and Fedor V. Kusmartsev and Jie Yuan and Beiyi Zhu and Qihong Chen and Jian-Hao Chen and Kai Liu and Kui Jin},
  journal= {arXiv preprint arXiv:2101.03518},
  year   = {2021}
}

Comments

6 pages, 4 figures