English

High-$T_c$ superconducting hydrides formed by LaH$_{24}$ and YH$_{24}$ cage structures as basic blocks

Superconductivity 2021-12-09 v2 Computational Physics

Abstract

Based on recent studies regarding high-temperature (high-TcT_c) La-Y ternary hydrides (e.g., P1ˉP{\bar{1}}-La2_2YH12_{12}, Pm3ˉmPm{\bar{3}}m-LaYH12_{12}, and Pm3ˉmPm{\bar{3}}m-(La,Y)H10_{10} with a maximum Tc253T_c \sim 253 K), we examined the phase and structural stabilities of the (LaH6_6)(YH6_6)y_y series as high-TcT_c ternary hydride compositions using a genetic algorithm and ab\it ab initio\it initio calculations. Our evaluation showed that the Pm3ˉmPm\bar{3}m-LaYH12_{12} reported in the previous study was unstable during decomposition into R3ˉcR\bar{3}c-LaH6_{6} + Im3ˉmIm\bar{3}m-YH6_{6}. We also discovered new crystal structures, namely CmmmCmmm-LaYH12_{12} (y=1y=1), R3ˉcR\bar{3}c-LaYH12_{12} (y=1y=1), CmmmCmmm-LaY3_3H24_{24} (y=3y=3), and R3ˉR\bar{3}-LaY3_3H24_{24} (y=3y=3), showing stability against such decomposition. While R3ˉcR\bar{3}c (y=1y=1) and R3ˉR\bar{3} (y=3y=3) did not exhibit superconductivity owing to the extremely low density of states at the Fermi level, CmmmCmmm phases exhibited a TcT_{c} of approximately 140~K at around 200~GPa owing to the extremely high electron--phonon coupling constant (λ\lambda = 1.876 for LaYH12_{12}). By the twice longer stacking for CmmmCmmm-LaY3_3H24_{24}, the coupling constant increased owing to the chemical pressure of Y, leading to a slightly increased TcT_{c}.

Keywords

Cite

@article{arxiv.2103.06690,
  title  = {High-$T_c$ superconducting hydrides formed by LaH$_{24}$ and YH$_{24}$ cage structures as basic blocks},
  author = {Peng Song and Zhufeng Hou and Pedro Baptista de Castro and Kousuke Nakano and Kenta Hongo and Yoshihiko Takano and Ryo Maezono},
  journal= {arXiv preprint arXiv:2103.06690},
  year   = {2021}
}

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13 pages