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高压下钇铈氢化物的合成与超导性

Synthesis and superconductivity in yttrium-cerium hydrides at high pressures.

作者信息

Chen Liu-Cheng, Luo Tao, Cao Zi-Yu, Dalladay-Simpson Philip, Huang Ge, Peng Di, Zhang Li-Li, Gorelli Federico Aiace, Zhong Guo-Hua, Lin Hai-Qing, Chen Xiao-Jia

机构信息

School of Science, Harbin Institute of Technology, Shenzhen, 518055, China.

Center for High Pressure Science and Technology Advanced Research, Shanghai, 201203, China.

出版信息

Nat Commun. 2024 Feb 28;15(1):1809. doi: 10.1038/s41467-024-46133-x.

Abstract

Further increasing the critical temperature and/or decreasing the stabilized pressure are the general hopes for the hydride superconductors. Inspired by the low stabilized pressure associated with Ce 4f electrons in superconducting cerium superhydride and the high critical temperature in yttrium superhydride, we carry out seven independent runs to synthesize yttrium-cerium alloy hydrides. The synthetic process is examined by the Raman scattering and X-ray diffraction measurements. The superconductivity is obtained from the observed zero-resistance state with the detected onset critical temperatures in the range of 97-141 K. The upper critical field towards 0 K at pressure of 124 GPa is determined to be between 56 and 78 T by extrapolation of the results of the electrical transport measurements at applied magnetic fields. The analysis of the structural data and theoretical calculations suggest that the phase of YCeH in hexagonal structure with the space group of P6/mmc is stable in the studied pressure range. These results indicate that alloying superhydrides indeed can maintain relatively high critical temperature at relatively modest pressures accessible by laboratory conditions.

摘要

进一步提高临界温度和/或降低稳定压力是氢化物超导体的普遍期望。受超导铈超氢化物中与Ce 4f电子相关的低稳定压力以及钇超氢化物中高临界温度的启发,我们进行了七次独立实验来合成钇铈合金氢化物。通过拉曼散射和X射线衍射测量对合成过程进行了研究。从观察到的零电阻状态获得了超导性,检测到的起始临界温度在97 - 141 K范围内。通过对施加磁场下电输运测量结果的外推,确定在124 GPa压力下朝向0 K的上临界场在56至78 T之间。结构数据分析和理论计算表明,具有P6/mmc空间群的六方结构的YCeH相在所研究的压力范围内是稳定的。这些结果表明,合金化超氢化物确实可以在实验室条件可达到的相对适度压力下保持相对较高的临界温度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3195/10901869/a625c47b41d2/41467_2024_46133_Fig1_HTML.jpg

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