论文标题
无限层镍的超导性:非零F-度的作用
Superconductivity in Infinite-layer Nickelates : Role of Non-zero f-ness
论文作者
论文摘要
我们采用第一原理密度的功能理论计算和低能带结构的威尼尔化,我们分析了不昂贵的,无限层的镍化合物,NDNIO $ _2 $,PRNIO $ _2 $和LANIO $ _2 $的电子结构。我们的研究揭示了非零$ f $ - ND和PR原子的重要作用,而不是$ f^{0} $ LA的占用。 ndnio $ _2 $和prnio $ _2 $的费米表面拓扑非常相似,而lanio $ _2 $的差异也存在差异。这种差异显示在弱耦合理论中三种化合物的计算掺杂依赖性超导特性中。我们发现NDNIO $ _2 $和PRNIO $ _2 $的两个差距超导性,与ND或PR化合物相比,LANIO $ _2 $的单个间隙超导率的可能性几乎被抑制了两倍。
Employing first-principles density functional theory calculations and Wannierization of the low energy band structure, we analyze the electronic structure of undoped, infinite-layer nickelate compounds, NdNiO$_2$, PrNiO$_2$ and LaNiO$_2$. Our study reveals important role of non-zero $f$-ness of Nd and Pr atoms, as opposed to $f^{0}$ occupancy of La. The non-zero $f$-ness becomes effective in lowering the energy of the rare-earth 5$d$ hybridized axial orbital, thereby enhancing the electron pockets and influencing the Fermi surface topology. The Fermi surface topology of NdNiO$_2$ and PrNiO$_2$ is strikingly similar, while differences are observed for LaNiO$_2$. This difference shows up in computed doping dependent superconducting properties of the three compounds within a weak coupling theory. We find two gap superconductivity for NdNiO$_2$ and PrNiO$_2$, and possibility of a single gap superconductivity for LaNiO$_2$ with the strength of superconductivity suppressed by almost a factor of two, compared to Nd or Pr compound.