English

Structural Phase Transition and Possible Valence Instability of Ce$-4f$ Electron Induced by Pressure in CeCoSi

Strongly Correlated Electrons 2022-06-08 v1

Abstract

X-ray powder diffraction and electrical resistivity measurements were performed on the tetragonal compound CeCoSi under pressure to elucidate the phase boundary of the pressure-induced structural transition and the change in the 4ff electronic state. The temperature-pressure phase diagram has been determined from the shift of the Bragg peaks and from the anomaly in the resistivity. The critical pressure, PsP_{\rm s} \sim 4.9 GPa at 300 K, decreases to PsP_{\rm s} \sim 3.6 GPa at 10 K. The decrease of PsP_{\rm s} is due not only to the decrease in volume of the unit cell but also to an anisotropic shrinkage by cooling. When crossing the boundary to the high-pressure phase, the resistivity shows a significant drop to exhibit a metallic temperature dependence. The results of this study strongly suggest that the structural phase transition can be ascribed to valence instability of Ce-4f4f electron.

Keywords

Cite

@article{arxiv.2203.16817,
  title  = {Structural Phase Transition and Possible Valence Instability of Ce$-4f$ Electron Induced by Pressure in CeCoSi},
  author = {Yukihiro Kawamura and Kakeru Ikeda and Alisha Nurshafiqah Binti Amat Dalan and Junichi Hayashi and Keiki Takeda and Chihiro Sekine and Takeshi Matsumura and Jun Gouchi and Yoshiya Uwatoko and Takahiro Tomita and Hiroki Takahashi and Hiroshi Tanida},
  journal= {arXiv preprint arXiv:2203.16817},
  year   = {2022}
}

Comments

7 pages, 5 figures, submitted to J. Phys. Soc. Jpn