學術活動
量子材料
Discovery of high-Tc superconductivity in a nickelate under pressure
浏覽次數:
主講人: Meng Wang (Sun Yat-Sen University)
地點: Room w563, Physics building, Peking University
時間: 3:00 pm, Sept. 20, 2023 (Wednesday)
主持 聯系人: 林熙<xilin@pku.edu.cn>
主講人簡介: 王猛,中山大學beat365教授、博士生導師,現任中山大學beat365副院長、廣東省磁電物性分析與器件重點實驗室副主任、beat365中子科學與技術中心主任。王猛教授本科畢業于吉林大學beat365,博士畢業于中國科學院物理研究所超導國家重點實驗室,曾在加州大學伯克利分校物理系開展博士後研究工作。王猛教授已發表學術論文70餘篇,包括Nature、Nature Physics、Nature Communications、Physical Review Letters、Physical Review B等雜志,是Science China-PMA雜志青年編委,長期擔任Nature、Nature Physics、Physical Review Letters等雜志審稿人。
王猛教授研究興趣包括非常規超導材料和量子磁性材料的物性及機理研究,研究方法包括材料生長、中子散射、高壓技術等,推動并參與中國首台高能非彈性中子散射飛行時間譜儀建設。

Abstract:

High-transition-temperature (high-Tc) superconductivity in cuprates has been discovered for more than three decades, but the underlying mechanism remains a mystery. Cuprates are the only unconventional superconducting family that host bulk superconductivity with Tcs above the liquid nitrogen boiling temperature at 77 Kelvin. We found superconductivity in single crystals of La3Ni2O7 grown by the high-pressure floating zone method with a maximum Tc of 80 K at pressures between 14.0-43.5 gigapascals [1,2]. Our collaborators have confirmed the high Tc superconductivity on our samples independently [3,4]. The superconducting phase under high pressure exhibits an orthorhombic structure of Fmmm space group with the 3dx2-y2 and 3dz2 orbitals of Ni cations strongly mixing with oxygen 2p orbitals. Density functional theory calculations suggest the superconductivity emerges coincidently with the metallization of the σ-bonding bands under the Fermi level, consisting of the 3dz2 orbitals with the apical oxygens connecting Ni-O bilayers. Thus, the discoveries not only reveal important clues for the high-Tc superconductivity in this Ruddlesden-Popper double-layered perovskite nickelates but also provide a new family of compounds to investigate the high-Tc superconductivity mechanism.

[1] Z. Liu, H. L. Sun, M. W. Huo, et al., Sci. China-Phys. Mech. Astron. 66, 217411(2023).

[2] H. L. Sun, M. W. Huo, X. W. Hu et al., Nature (2023),

https://www.nature.com/articles/s41586-023-06408-7.

[3] Y. N. Zhang, M. Wang, H. Q. Yuan et al., arXiv:2307.14819(2023)

[4] J. Hou, M. Wang, J. G. Cheng et al., arXiv:2307.09865(2023)