论文标题
现实的平面外掺杂电位对过度粉碎酸盐的超流体密度的影响
Effect of realistic out-of-plane dopant potentials on the superfluid density of overdoped cuprates
论文作者
论文摘要
关于孔掺杂的过量丘比特的最新实验论文认为,一系列观察结果表明,超导状态中的意外行为意味着基于准胶片的Landau-BCS范式的崩溃在该兴奋剂范围内。相比之下,目前的一些作者认为,一个现象学“肮脏的$ d $ - 波”理论分析基本上解释了超导状态下热力学和运输特性的所有方面,只要适当地解释了弱,非平面外的毒品杂质的异常影响。在这里,我们试图通过执行$ \ textit {ab-initio} $计算LSCO和TL-2201的掺杂剂杂质潜力来将该理论放在更定量的基础上。这些电势比以前考虑的尖点杂质模型更为复杂,并且需要计算前向散射校正以运输特性。包括逼真的,ARPES衍生的频带结构,费米液体重新构化和顶点校正,我们表明该理论可以半词性解释两种最多研究的过量材料的异常超流体密度测量。
Recent experimental papers on hole-doped overdoped cuprates have argued that a series of observations showing unexpected behavior in the superconducting state imply the breakdown of the quasiparticle-based Landau-BCS paradigm in that doping range. In contrast, some of the present authors have argued that a phenomenological "dirty $d$-wave" theoretical analysis explains essentially all aspects of thermodynamic and transport properties in the superconducting state, provided the unusual effects of weak, out-of-plane dopant impurities are properly accounted for. Here we attempt to place this theory on a more quantitative basis by performing $\textit{ab-initio}$ calculations of dopant impurity potentials for LSCO and Tl-2201. These potentials are more complex than the pointlike impurity models considered previously, and require calculation of forward scattering corrections to transport properties. Including realistic, ARPES-derived bandstructures, Fermi liquid renormalizations, and vertex corrections, we show that the theory can explain semiquantitatively the unusual superfluid density measurements of the two most studied overdoped materials.