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中国物理学会期刊

双层镍氧化物La3Ni2O7超导体理论研究近期进展与展望

CSTR: 32037.14.aps.74.20250711

Recent advances and prospects in theoretical study of bilayer nickelate superconductor La3Ni2O7

CSTR: 32037.14.aps.74.20250711
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  • 2023年, 具有双层镍氧面结构的La3Ni2O7单晶在高压下被发现具有高温超导电性. 随后, 大量理论与数值计算研究工作涌现, 旨在阐明这一新型高温超导体在不同方面的物理特性及其超导机理, 并据此探索和预测新型镍基高温超导材料. 由于La3Ni2O7镍氧化合物具有多轨道自由度的特征, 其电子关联效应复杂, 物理学家对其超导配对起源的理解存在分歧, 目前多种超导理论并存. 本文综述La3Ni2O7镍氧化物在理论和数值计算方面的若干近期进展, 并讨论其一些基本物性和可能的超导机理.

     

    The high-temperature superconductivity in bilayer nickelate La3Ni2O7 under high pressures, which was discovered in 2023, has spurred intensive theoretical and numerical investigations. These studies aim to unravel physical properties of La3Ni2O7 from various aspects, with particular emphasis on its pairing symmetry and underlying superconducting mechanism. Moreover, significant effort has also been made to explore and predict novel nickel-based superconductors related to La3Ni2O7. This article reviews these recent advancements aimed at elucidating the physical properties and superconducting mechanism of La3Ni2O7, whose multi-orbital characteristics and intricate electronic correlations have spawned diverse theories for its pairing mechanism. In this article, the recent findings on La3Ni2O7 are summarized regarding its macroscopic models, pairing symmetry, normal state characteristics, and the structure of spin and charge density waves. Particular attention is paid to the debate surrounding the role of σ-bonding band metallization in superconductivity. Finally, this article also presents an outlook on future studies crucial for advancing our understanding of La3Ni2O7 superconductivity.

     

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