English

Evolution of the superconductivity in pressurized La3-xSmxNi2O7

Superconductivity 2025-10-16 v1 Strongly Correlated Electrons

Abstract

Motivated by the discovery of superconductivity in bilayer La3_3Ni2_2O7_7 at 80 K and the increased superconducting transition temperature, TcT_\text{c}, up to 92 K in single crystals of La2_2SmNi2_2O7_7 under pressure, we systematically study the effect of Sm doping on the superconductivity and structure of La3x_{3-x}Smx_xNi2_2O7_7 (0 \leq x \leq 1.5) under pressure. Experimental investigations in polycrystalline samples reveal that Sm doping monotonically decreases the lattice constants cc and aa, thereby enhancing crystal structure distortion and leading to an evolution of the metallic ground state in La3_3Ni2_2O7_7 to an insulating state in La1.5_{1.5}Sm1.5_{1.5}Ni2_2O7_7. The maximum onset TcT_\text{c} in compounds x=0.9x=0.9 and 1.5 is 89 K, while the pressure that drives the emergence of superconductivity is higher for higher doping levels. The results suggest that the enhancement of TcT_\text{c} in La3x_{3-x}Smx_xNi2_2O7_7 is mainly affected by the compressed cc lattice before saturation, and the structure transition is critical for the emergence of superconductivity. Our experimental results provide insight into the influence of elemental substitution on nickelate superconductors, offering a means to increase the transition temperature further.

Keywords

Cite

@article{arxiv.2510.13342,
  title  = {Evolution of the superconductivity in pressurized La3-xSmxNi2O7},
  author = {Qingyi Zhong and Junfeng Chen and Zhengyang Qiu and Jingyuan Li and Xing Huang and Peiyue Ma and Mengwu Huo and Hongliang Dong and Hualei Sun and Meng Wang},
  journal= {arXiv preprint arXiv:2510.13342},
  year   = {2025}
}

Comments

8 pages, 4 figures

R2 v1 2026-07-01T06:38:33.161Z