English

Superconductivity of cerium under pressures up to 54GPa

Superconductivity 2024-02-26 v1 Strongly Correlated Electrons

Abstract

Cerium is a fascinating element due to its diverse physical properties, which include forming various crystal structures (γ\gamma, α\alpha, α\alpha^{'}, α\alpha^{''} and ϵ\epsilon), mixed valence behavior and superconductivity, making it an ideal platform for investigating the interplay between different electronic states. Here, we present a comprehensive transport study of cerium under hydrostatic pressures up to 54 GPa. Upon applying pressure, cerium undergoes the α\alpha \rightarrow α\alpha^{''} transition at around 4.9 GPa, which is accompanied by the appearance of superconductivity with TcT_{\rm c} of 0.4 K, and TcT_{\rm c} slightly increases to 0.5 K at 11.4 GPa. At 14.3 GPa, TcT_{\rm c} suddenly increases when the α\alpha^{''} phase transforms into the ϵ\epsilon phase, reaching a maximum value of 1.25 K at around 17.2 GPa. Upon further increasing the pressure, TcT_{\rm c} monotonically decreases. Together with the results of previous studies, our findings suggest that the evolution of superconductivity in cerium is closely correlated with the multiple pressure-induced structural transitions and corresponding unusual electronic structures.

Keywords

Cite

@article{arxiv.2308.04377,
  title  = {Superconductivity of cerium under pressures up to 54GPa},
  author = {Yanan Zhang and Dajun Su and Zhaoyang Shan and Zihan Yang and Jiawen Zhang and Rui Li and Michael Smidman and Huiqiu Yuan},
  journal= {arXiv preprint arXiv:2308.04377},
  year   = {2024}
}