论文标题
无限层镍的低能等离子体激发
Low-energy plasmon excitations in infinite-layer nickelates
论文作者
论文摘要
在无限层镍盐中发现超导性目前是凝结物理学的一个重要话题,与酸脂肪酸的潜在相似之处和差异在激烈的争论中。我们从两个相反的观点确定了镍的电荷激发光谱的一般特征:(i)镍被认为是强相关的电子系统,例如铜酸盐超导体,因此可以用$ t $ - $ j $模型来描述,并且(ii)电子相关效应在丘比亚群体中不如丘比特,因此,captration and caterrations and canty contription contimation(rpa)canciention(rpa)canciention(rpa)。我们发现,在这两种情况下,围绕动量转移$ \ vq =(0,0,q_z)$实现了等离子体激发,尽管它们倾向于在RPA中更强烈地减弱。特别是,这种阻尼可以通过镍镍预期的相对较大的层间跳增强。除了在ND $ _ {0.8} $ _ {0.8} $ sr $ _ {0.2} $ nio $ _2 $中观察到的光学等离子体以$ \ vq =(0,0,0)$外,我们还能获得低ENERGY等离子体,带有$ \ sim 360 $和$ \ sim 560 $ mev的差距,$ \ sim 560 $ \ v q = q = vq = q. $ q_z $分别(i)和(ii)。目前的工作提供了一个可能的理论提示,可以回答镍含量是否呈杯形,并有助于对镍的电荷动态的一般理解。
The discovery of superconductivity in infinite-layer nickelates is presently an important topic in condensed-matter physics, and potential similarities to and differences from cuprates are under intense debate. We determine general features of the charge excitation spectrum in nickelates from two opposite viewpoints: (i) Nickelates are regarded as strongly correlated electron systems like cuprate superconductors and thus can be described by the $t$-$J$ model, and (ii) electron correlation effects are not as strong as in cuprates, and thus, random-phase approximation (RPA) calculations may capture the essential physics. We find that in both cases, plasmon excitations are realized around the momentum transfer $\vq=(0,0,q_z)$, although they tend to be damped more strongly in the RPA. In particular, this damping is enhanced by the relatively large interlayer hopping expected in nickelates. Besides reproducing the optical plasmon at $\vq=(0,0,0)$ observed in Nd$_{0.8}$Sr$_{0.2}$NiO$_2$, we obtain low-energy plasmons with gaps of $\sim 360$ and $\sim 560$ meV at $\vq=(0,0,q_z)$ for finite $q_z$ in cases (i) and (ii), respectively. The present work offers a possible theoretical hint to answer whether nickelates are cupratelike or not and contributes to the general understanding of the charge dynamics in nickelates.