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Role of the upper branch of the hour-glass magnetic spectrum in the formation of the main kink in the electronic dispersion of high- T_c cuprate superconductors

机译:沙漏磁谱上分支在高T_c铜酸盐超导体电子弥散中主扭结形成中的作用

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摘要

We investigate the electronic dispersion of the high-T_C cuprate superconductors using the fully self-consistent version of the phenomenological model, where charge planar quasiparticles are coupled to spin fluctuations. The inputs we use, the underlying (bare) band structure and the spin susceptibility X, are extracted from fits of angle-resolved photoemission and inelastic neutron scattering data of underdoped YBa_2Cu_3O_(6.6) by T. Dahm and coworkers [Nat. Phys. 5, 217 (2009)]. Our main results are as follows: (ⅰ) We have confirmed the finding by Dahm and coworkers that the main nodal kink is, for the present values of the input parameters, determined by the upper branch of the hourglass of X. We demonstrate that the properties of the kink depend qualitatively on the strength of the charge-spin coupling. (ⅱ) The effect of the resonance mode of X on the electronic dispersion strongly depends on its kurtosis in the quasimomentum space. A low (high) kurtosis implies a negligible (considerable) effect of the mode on the dispersion in the near-nodal region. (ⅲ) The energy of the kink decreases as a function of the angle 6 between the Fermi surface cut and the nodal direction, in qualitative agreement with recent experimental observations. We clarify the trend and make a specific prediction concerning the angular dependence of the kink energy in underdoped YBa_2Cu_3O_(6.6).
机译:我们使用完全自洽的现象学模型研究高T_C铜酸盐超导体的电子色散,其中电荷平面准粒子与自旋涨落耦合。 T. Dahm和同事[Nat。Co.,Ltd.]从不足掺杂的YBa_2Cu_3O_(6.6)的角度分辨光发射和非弹性中子散射数据的拟合中提取了我们使用的输入(基础(裸露)能带结构和自旋磁化率X)。物理5,217(2009)]。我们的主要结果如下:(ⅰ)我们已经证实了Dahm及其同事的发现,对于输入参数的当前值,主要节点扭结是由X的沙漏的上分支决定的。我们证明了纽结的特性在质量上取决于电荷自旋耦合的强度。 (ⅱ)X共振模式对电子色散的影响很大程度上取决于其在准动量空间中的峰度。低(高)峰度意味着该模式对近节点区域中色散的影响可忽略不计(相当大)。 (ⅲ)扭结的能量随着费米表面切面和节点方向之间的夹角6的变化而减小,这与最近的实验观察在质量上是一致的。我们弄清了趋势,并针对未掺杂的YBa_2Cu_3O_(6.6)中的纽结能量的角度依赖性进行了具体预测。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2016年第14期|144501.1-144501.11|共11页
  • 作者单位

    Department of Condensed Matter Physics, Faculty of Science, Masaryk University, Kotldfskd 2, 611 37 Brno, Czech Republic;

    Department of Condensed Matter Physics, Faculty of Science, Masaryk University, Kotldfskd 2, 611 37 Brno, Czech Republic,Central European Institute of Technology, Masaryk University, Kamenice 753/5, 62500 Brno, Czech Republic;

    Fakultaet fuer Physik, Universitaet Bielefeld, Postfach 100131, D-33501 Bielefeld, Germany;

    Department of Condensed Matter Physics, Faculty of Science, Masaryk University, Kotldfskd 2, 611 37 Brno, Czech Republic,Central European Institute of Technology, Masaryk University, Kamenice 753/5, 62500 Brno, Czech Republic;

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