超导电性
单斜晶系
配对
四方晶系
声子
凝聚态物理
相(物质)
环境压力
动力学同位素效应
材料科学
相变
高压
物理
热力学
量子力学
氘
分子
作者
Jie 杰 Cheng 程,Yu-Lan 玉兰 Cheng 程,Bin 斌 Li 李,Sheng-Li 胜利 Liu 刘
标识
DOI:10.1088/1674-1056/accd56
摘要
Isotope effect on superconductive transition temperature ( T c ) is an essential indicator to examine whether the mechanism of superconductors is conventional. Unconventional isotope effect of BiS 2 -based superconductors has been previously reported in ambient-pressure tetragonal phase. However, to comprehensively ascertain the nature of superconductivity, the investigation of BiS 2 -based system in high-pressure structure is highly desirable. In this work, we carried out the first-principles calculations of phonon spectra and superconductivity in high-pressure monoclinic phase of LaO 0.5 F 0.5 BiS 2 with 32 S and 34 S, and observed that the corresponding isotope coefficient is 0.13 ≤ α ≤ 0.20. This value is much greater than that of BiS 2 -based superconductors in ambient-pressure phase, but slightly smaller than that of conventional MgB 2 . Taking into account the calculated T c lower than experimental results, we finally conclude that the moderate phonon-mediated pairing plays a significant role in forming superconductivity of BiS 2 -based system in high-pressure phase, moreover, the cooperative multiple paring interactions should also be considered.
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