Title | Ta4CoSi: A tantalum-rich superconductor with a honeycomb network structure |
Author | |
Corresponding Author | Luo,Huixia |
Publication Years | 2022-10-01
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DOI | |
Source Title | |
ISSN | 2469-9950
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EISSN | 2469-9969
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Volume | 106Issue:13 |
Abstract | The crystal structure of solid-state materials with unique lattices is considered one of the main factors determining physical properties, including superconductivity. Materials with honeycomb lattices have inspired intense research interest for their novel properties. A previously unknown compound, Ta4CoSi, is discussed herein, along with its crystal structure and superconducting properties. It crystallizes in a CuAl2-type structure (space group P4/mcc, No. 124), with the lattice parameters a=b=6.17755(7)Å and c=4.98443(8)Å, featuring honeycomb networks of Ta-Ta in the (110) plane. Superconductivity is observed below the critical temperature of ∼2.45 K, while lower and upper critical magnetic fields are ∼9.86 mT and 0.84 T, respectively. Experiments and theoretical calculations show that the honeycomb lattices significantly influence the superconducting properties. This material may thus provide a new platform for investigating the exotic superconductivity of honeycomb networks. |
Other Abstract | The crystal structure of solid-state materials with unique lattices is considered one of the main factors determining physical properties, including superconductivity. Materials with honeycomb lattices have inspired intense research interest for their novel properties. A previously unknown compound, Ta4CoSi, is discussed herein, along with its crystal structure and superconducting properties. It crystallizes in a CuAl2-type structure (space group P4/mcc, No. 124), with the lattice parameters a=b=6.17755(7)Å and c=4.98443(8)Å, featuring honeycomb networks of Ta-Ta in the (110) plane. Superconductivity is observed below the critical temperature of ∼2.45 K, while lower and upper critical magnetic fields are ∼9.86 mT and 0.84 T, respectively. Experiments and theoretical calculations show that the honeycomb lattices significantly influence the superconducting properties. This material may thus provide a new platform for investigating the exotic superconductivity of honeycomb networks. |
URL | [Source Record] |
Indexed By | |
Language | English
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Important Publications | NI Journal Papers
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SUSTech Authorship | Others
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ESI Research Field | PHYSICS
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Citation statistics |
Cited Times [WOS]:4
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Document Type | Journal Article |
Identifier | http://kc.sustech.edu.cn/handle/2SGJ60CL/406584 |
Department | Institute for Quantum Science and Engineering 理学院_物理系 |
Affiliation | 1.School of Materials Science and Engineering,State Key Laboratory of Optoelectronic Materials and Technologies,Key Lab of Polymer Composite & Functional Materials,Guangzhou Key Laboratory of Flexible Electronic Materials and Wearable Devices,Sun Yat-Sen University,Guangzhou,No. 135, Xingang Xi Road,510275,China 2.School of Physics,Center for Neutron Science and Technology,Guangdong Provincial Key Laboratory of Magnetoelectric Physics and Devices,State Key Laboratory of Optoelectronic Materials and Technologies,Sun Yat-Sen University,Guangzhou,510275,China 3.Shenzhen Institute for Quantum Science and Engineering,Southern University of Science and Technology,Shenzhen,518055,China 4.International Quantum Academy,Shenzhen,518048,China 5.Key Laboratory of Artificial Structures and Quantum Control,Shenyang National Laboratory for Materials Science,School of Physics and Astronomy,Shanghai Jiao Tong University,Shanghai,200240,China 6.Institute of Physics,Chinese Academy of Sciences,Beijing,100190,China |
Recommended Citation GB/T 7714 |
Zeng,Lingyong,Hu,Xunwu,Guo,Shu,et al. Ta4CoSi: A tantalum-rich superconductor with a honeycomb network structure[J]. Physical Review B,2022,106(13).
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APA |
Zeng,Lingyong.,Hu,Xunwu.,Guo,Shu.,Lin,Gaoting.,Song,Jing.,...&Luo,Huixia.(2022).Ta4CoSi: A tantalum-rich superconductor with a honeycomb network structure.Physical Review B,106(13).
|
MLA |
Zeng,Lingyong,et al."Ta4CoSi: A tantalum-rich superconductor with a honeycomb network structure".Physical Review B 106.13(2022).
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