English

Observation of non-superconducting phase changes in LuH$_{2\pm\text{x}}$N$_y$

Superconductivity 2023-09-28 v2 Materials Science

Abstract

The recent report of near-ambient superconductivity in nitrogen doped lutetium hydride has triggered a worldwide fanaticism and raised major questions about the latest claims. An intriguing phenomenon of color changes in pressurized samples from blue to pink to red was observed and correlated with the claimed superconducting transition, but the origin and underlying physics of these color changes have yet to be elucidated. Here we report synthesis and characterization of high-purity nitrogen doped lutetium hydride LuH2±x_{2\pm\text{x}}Ny_y with the same structure and composition as in the main phase of near-ambient superconductor1. We find a new purple phase of LuH2±x_{2\pm\text{x}}Ny_y between blue and pink phase, and reveal that the sample color changes likely stem from pressure-driven redistribution of nitrogen and its interaction with the LuH2_2 framework. No superconducting transition is found in all blue, purple, pink and red phases at temperatures 1.8-300 K and pressures 0-30 GPa. Instead, we identify a notable temperature-induced resistance anomaly of structural and/or electronic origin in LuH2±x_{2\pm\text{x}}Ny_y, which is most pronounced in the pink phase and may have been erroneously interpreted as a sign of superconducting transition. This work establishes key benchmarks for nitrogen doped lutetium hydrides, allowing an in-depth understanding of the novel pressure-induced phase changes.

Keywords

Cite

@article{arxiv.2303.17587,
  title  = {Observation of non-superconducting phase changes in LuH$_{2\pm\text{x}}$N$_y$},
  author = {Xiangzhuo Xing and Chao Wang and Linchao Yu and Jie Xu and Chutong Zhang and Mengge Zhang and Song Huang and Xiaoran Zhang and Bingchao Yang and Xin Chen and Yongsheng Zhang and Jian-gang Guo and Zhixiang Shi and Yanming Ma and Changfeng Chen and Xiaobing Liu},
  journal= {arXiv preprint arXiv:2303.17587},
  year   = {2023}
}

Comments

17 pages and 5 figures in the main text. 9 pages and 12 figures in the Supplementary Material. Any valuable comments and suggestions are warmly welcomed