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Phonon-mediated superconductivity in orthorhombic XS(X=Nb, Ta or W)

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【作者】 刘国华江恺悦万一乔树祥谭锦函焦娜张平路洪艳

【Author】 Guo-Hua Liu;Kai-Yue Jiang;Yi Wan;Shu-Xiang Qiao;Jin-Han Tan;Na Jiao;Ping Zhang;Hong-Yan Lu;School of Physics and Physical Engineering, Qufu Normal University;Institute of Applied Physics and Computational Mathematics;

【通讯作者】 路洪艳;

【机构】 School of Physics and Physical Engineering, Qufu Normal UniversityInstitute of Applied Physics and Computational Mathematics

【摘要】 The unique three-dimensional orthorhombic NbS(o-NbS) compound synthesized in 1969 has recently been experimentally confirmed to be a superconductor [Phys. Rev. B 108 174517(2023)]. However, there is currently no theoretical research on its superconducting mechanism. In this work, we investigate the superconducting properties of o-Nb S from first-principles calculations. Based on the Eliashberg equation, it is found that the superconductivity mainly originates from the coupling between the electrons of Nb-4d orbitals and the vibrations of Nb atoms in the low-frequency region and those of S atoms in the high-frequency region. A superconducting transition temperature(T_c) of 10.7 K is obtained, which is close to the experimental value and higher than most transition metal chalcogenides(TMCs). The calculated thermodynamic properties in the superconducting state, such as specific heat, energy gap, isotope coefficient, etc., also indicate that o-NbS is a conventional phonon-mediated superconductor. These results are consistent with recent experimental reports and provide a good understanding of the superconducting mechanism of o-Nb S. Furthermore, the TMCs of o-TaS and o-WS are also investigated; these belong to the same and neighboring groups of Nb, and we find that o-TaS and o-WS are also phonon-mediated superconductors with T_c of 8.9 K and 7.2 K, respectively.

【Abstract】 The unique three-dimensional orthorhombic NbS(o-NbS) compound synthesized in 1969 has recently been experimentally confirmed to be a superconductor [Phys. Rev. B 108 174517(2023)]. However, there is currently no theoretical research on its superconducting mechanism. In this work, we investigate the superconducting properties of o-Nb S from first-principles calculations. Based on the Eliashberg equation, it is found that the superconductivity mainly originates from the coupling between the electrons of Nb-4d orbitals and the vibrations of Nb atoms in the low-frequency region and those of S atoms in the high-frequency region. A superconducting transition temperature(T_c) of 10.7 K is obtained, which is close to the experimental value and higher than most transition metal chalcogenides(TMCs). The calculated thermodynamic properties in the superconducting state, such as specific heat, energy gap, isotope coefficient, etc., also indicate that o-NbS is a conventional phonon-mediated superconductor. These results are consistent with recent experimental reports and provide a good understanding of the superconducting mechanism of o-Nb S. Furthermore, the TMCs of o-TaS and o-WS are also investigated; these belong to the same and neighboring groups of Nb, and we find that o-TaS and o-WS are also phonon-mediated superconductors with T_c of 8.9 K and 7.2 K, respectively.

【基金】 Project supported by the National Natural Science Foundation of China (Grant Nos. 12074213 and 11574108);the Major Basic Program of Natural Science Foundation of Shandong Province (Grant No. ZR2021ZD01);the Natural Science Foundation of Shandong Province (Grant No. ZR2023MA082);the Project of Introduction and Cultivation for Young Innovative Talentsin Colleges and Universities of Shandong Province
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2025年02期
  • 【分类号】O469
  • 【下载频次】1
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