Superconductivity in non-centrosymmetric ZrNiAl and HfRhSn-type compounds

被引:2
|
作者
Kumar, Rohit [1 ,2 ]
Luo, Shuai-Shuai [1 ,2 ]
Du, Feng [1 ,2 ]
Su, Hang [1 ,2 ]
Zhang, Jiawen [1 ,2 ]
Cao, Chao [1 ,2 ]
Yuan, H. Q. [1 ,2 ,3 ,4 ]
机构
[1] Zhejiang Univ, Ctr Correlated Matter, Hangzhou 310058, Peoples R China
[2] Zhejiang Univ, Dept Phys, Hangzhou 310058, Peoples R China
[3] Zhejiang Univ, Dept Phys, Zhejiang Prov Key Lab Quantum Technol & Device, Hangzhou 310058, Peoples R China
[4] Zhejiang Univ, State Key Lab Silicon Mat, Hangzhou 310058, Peoples R China
基金
中国国家自然科学基金; 国家重点研发计划;
关键词
non-centrosymmetric superconductor; antisymmetric spin-orbit coupling; ZrNiAl structure type; RELAXATION; HEAT;
D O I
10.1088/1361-648X/ac8a80
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
We report the discovery of superconductivity in non-centrosymmetric compounds HfNiAl, ZrNiAl, ZrNiGa, and HfPtAl by measuring their electrical transport and thermodynamic properties. HfNiAl, ZrNiAl, and ZrNiGa crystallize in the ZrNiAl-type crystal structure, whereas HfPtAl crystallizes in the HfRhSn-type crystal structure. Superconducting transitions for HfNiAl, ZrNiAl, ZrNiGa, and HfPtAl are observed at 1.0 K, 1.0 K, 0.42 K, and 0.58 K, respectively. Using the Werthamer-Helfand-Hohenberg model, the zero-temperature upper critical fields mu H-0(c2)(0) were estimated to be 0.58 T, 0.24 T, 0.08 T, and 0.34 T for HfNiAl, ZrNiAl, ZrNiGa, and HfPtAl, respectively. The observed jump in electronic heat capacity (Delta C-e/gamma T) across the superconducting transition is 1.3, 1.3, and 1.2 for HfNiAl, ZrNiAl, and HfPtAl, respectively. After the inclusion of the spin-orbit coupling in the band structure calculations, a total of six bands for ZrNiAl, HfPtAl, and ZrNiGa, and eight bands for HfNiAl were found to cross the Fermi level. Spin-orbit coupling induced maximum splitting (Delta E-ASOC/k(B)T(c)) of the electronic bands near the Fermi level was found to be 1697, 517, 1138, and 4230 for HfNiAl, ZrNiAl, ZrNiGa, and HfPtAl, respectively. Large variation of the antisymmetric spin-orbit coupling (ASOC) among these compounds provides a great opportunity to study the effects of ASOC on the superconducting pairing states.
引用
收藏
页数:9
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