论文标题
无限镍镍超导体中的竞争不稳定的自旋波动和磁激发
Competing Incommensurate Spin Fluctuations and Magnetic Excitations in Infinite-Layer Nickelate Superconductors
论文作者
论文摘要
最近发现的无限层镍表现出了巨大的希望,可以帮助解散负责高温超导性的各种合作机制。然而,原始镍盐中缺乏抗铁磁序,这是连接碎屑和镍物理物理学的挑战。在这里,通过使用量子多体绿色的基于函数的方法来处理电子和磁性结构,我们揭示了许多二维和三维磁条带不稳定性的存在,这些磁条纹不稳定性被证明在LANIO $ _2 $的整个相图中持续存在。我们的分析表明,无限层镍的磁性特性更接近掺杂的铜酸盐,而掺杂的铜酸盐的含量是不均匀的地面状态而不是未掺杂的铜层。发现LANIO $ _2 $中的计算出的木片频谱包含局部和流动载体的贡献。理论上获得的磁化分散剂与相应的RIX实验的结果一致。我们的研究深入了解了无限层镍盐中不均匀性的起源及其与丘比特的关系。
The recently discovered infinite-layer nickelates show great promise in helping to disentangle the various cooperative mechanisms responsible for high-temperature superconductivity. However, lack of antiferromagnetic order in the pristine nickelates presents a challenge for connecting the physics of the cuprates and nickelates. Here, by using a quantum many-body Green's function-based approach to treat the electronic and magnetic structures, we unveil the presence of many two- and three-dimensional magnetic stripe instabilities that are shown to persist across the phase diagram of LaNiO$_2$. Our analysis indicates that the magnetic properties of the infinite-layer nickelates are closer to those of the doped cuprates which host inhomogeneous ground states rather than the undoped cuprates. The computed magnon spectrum in LaNiO$_2$ is found to contain an admixture of contributions from localized and itinerant carriers. The theoretically obtained magnon dispersion is in accord with the results of the corresponding RIXS experiments. Our study gives insight into the origin of inhomogeneity in the infinite-layer nickelates and their relationship with the cuprates.