Multigap nodeless superconductivity in the topological semimetal PdTe

Chengcheng Zhao,Xiangqi Liu,Jinjin Wang,Chunqiang Xu, Baomin Wang,Wei Xia,Zhenhai Yu,Xiaobo Jin,Xu Zhang,Jing Wang, Dongzhe Dai, Chengpeng Tu,Jiaying Nie,Hanru Wang, Yihan Jiao, Daniel Duong,Silu Huang,Rongying Jin, Zhu'an Xu,Yanfeng Guo,Xiaofeng Xu,Shiyan Li

Physical Review B(2023)

引用 0|浏览25
暂无评分
摘要
Recently PdTe was identified as a spin-orbit coupled topological Dirac semimetal and was claimed to exhibit both bulk-nodal and surface-nodeless superconducting gaps. Here we report the ultralow-temperature thermal conductivity measurements on PdTe single crystals with $T_c$ = 4.5 K to investigate its superconducting gap structure. It is found that the residual linear term $\kappa_0/T$ is negligible in zero magnetic field. Furthermore, the field dependence of $\kappa_0(H)/T$ exhibits an $\sf S$-shaped curve. These results suggest that PdTe has multiple nodeless superconducting gaps, which is at odds with the claimed bulk-nodal gap. The reason for the discrepancy is likely that previous angle-resolved photoemission spectroscopy measurements were only performed down to 2 K and cannot observe the smaller nodeless gap. The fully gapped superconducting state in PdTe is compatible with it being a topological superconductor candidate.
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要