超导 SnH$_4$ 的非费米液体行为
超导电性
2023-09-14 v2 材料科学
摘要
我们在 180-210 GPa 压力下通过 X 射线衍射方法研究了 Sn 与 H 的化学反应。获得了一种此前未知的具有立方结构()的四氢化物 SnH,其在 = 72 K 以下表现出超导性质;同时还检测到一种高分子量 -SnH 超氢化物以及几种较低氢化物,即 SnH 与 -SnH。SnH 中临界电流密度 (T) 的温度依赖关系在 180 GPa 下给出超导能隙 2(0) = 23 meV。SnH 在强磁场中表现出异常行为:磁电阻与上限临界磁场 (T) ( - ) 具有 线性依赖关系。后者与为常规超导体建立的 Wertheimer-Helfand-Hohenberg 模型相矛盾。与此同时, SnH 在非超导态下的电阻温度依赖表现出对 Bloch-Gr"uneisen 模型所描述的声子介导散射预期的偏离,且超出费米液体理论框架。此类反常现象出现在许多超氢化物中,使它们比先前认为的更接近于铜氧化物超导体。
引用
@article{arxiv.2303.06339,
title = {Non-Fermi-Liquid Behavior of Superconducting SnH$_4$},
author = {Ivan A. Troyan and Dmitrii V. Semenok and Anna G. Ivanova and Andrey V. Sadakov and Di Zhou and Alexander G. Kvashnin and Ivan A. Kruglov and Oleg A. Sobolevskiy and Marianna V. Lyubutina and Dmitry S. Perekalin and Toni Helm and Stanley W. Tozer and Maxim Bykov and Alexander F. Goncharov and Vladimir M. Pudalov and Igor S. Lyubutin},
journal= {arXiv preprint arXiv:2303.06339},
year = {2023}
}
备注
Additional acknowledgments are made, one more co-author has been added, equations of the Talantsev-Tallon model have been added and clarified. They were used to obtain the superconducting gap from the V-I characteristics. We also added cif files of tin hydrides to SI