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A Semiphenomenological Approach for Description of Quasiparticles in High Temperature Superconductors

机译:高温超导体中Quasiply的半聚集方法方法

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We present a semiphenomenological approach to calculating the quasiparticle spectra of High Temperature Superconductors (HTSC's). It is based on a particularly efficient parametrization of the effective electron-electron interaction afforded by the Density Functional Theory for superconductors and a Tight-Binding Linearized-Muffin-Tin-Orbital scheme for solving the corresponding Kohn-Sham-Bogoliubov-de Gennes equations. We illustrate the method by investigating a number of site and orbital specific, but otherwise phenomenological models of pairing in quantitative detail. We compare our results for the anisotropy of the gap function on the Fermi surface with those deduced from photoemission experiments on single crystals of YBa_2Cu_3O_7. We also compare our predictions for the low temperature dependence of the specific heat with measurements. We investigate the doping dependence of the superconducting transition temperature, T_c. We present new evidence that the Van Hove-like scenario is an essential feature of superconductivity in these materials. Since our description of pairing is semiphenomenological, we shed new light on the physical mechanism of pairing is semiphenomenological, we shed new light on the physical mechanism of pairing only indirectly and conclude, provisionally, that the dominant pairing interaction operates between electrons of opposite spin, on nearest neighbour Cu sites in d_x2_(-y)2 orbitals.
机译:我们提出了一种计算高温超导体(HTSC)的Quasiplicle Spectra的半聚集性方法。基于由密度泛函理论的有效电子相互作用的特别高效的参数化,用于超导体和紧密的线性化 - 松蛋白 - 轨道轨道方案,用于求解相应的Kohn-sham-bogoliubov-de Gennes方程。我们通过研究许多网站和轨道特异性,但是以其他方式在定量细节中配对的现象学模型来说明该方法。我们将我们的结果与Fermifice实验中推导的yba_2cu_3o_7的单晶中推导的那些结果进行了比较Fermi表面上的各向异性。我们还比较我们对测量特定热量的低温依赖性的预测。我们研究了超导转变温度T_C的掺杂依赖性。我们提出了van Hove场景的新证据是这些材料中超导性的基本特征。由于我们的配对描述是半高位学,我们在配对的物理机制上阐明了新的光明是半高位学,我们在暂时间接地和结论的配对的物理机制上阐述了新的光线,所以主导的配对相互作用在相对旋转的电子之间运行,在d_x2 _( - - - - - - - y)2轨道中的最近邻居Cu站点。

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