Institut für Festkörpertheorie, Westfälische Wilhelms-Universität, Wilhelm-Klemm-Strasse 10, D-48149 Münster, Germany.
J Phys Condens Matter. 2010 Feb 10;22(5):055404. doi: 10.1088/0953-8984/22/5/055404. Epub 2010 Jan 15.
Phonon dynamics, charge response and the phonon density of states are calculated for the high-temperature superconductors HgBa(2)CuO(4) and Bi(2)Sr(2)CuO(6) within a microscopic model for the electronic density response. The results are compared with previous calculations for La(2)CuO(4) and Nd(2)CuO(4). Our main focus is on the phonon anomalies which are connected with the high-frequency oxygen bond-stretching modes (OBSM) found before in our calculations for p-doped La(2)CuO(4) and n-doped Nd(2)CuO(4). We investigate the question if the characteristic softening of the OBSM and the related strong coupling to the electrons is also present in HgBa(2)CuO(4) and Bi(2)Sr(2)CuO(6). In particular, the importance of the contribution of the more delocalized Cu 4s state besides the localized Cu 3d state on the softening is investigated and the different anticrossing behavior due to the presence of several phonon modes with the same symmetry as the OBSM is studied. This makes the identification of the anomalies quite complicated. Furthermore, the influence of electronic polarization processes at ions out of the CuO plane in the ionic layers on the phonon dynamics is calculated. In this context the qualitative type of charge response, i.e. the presence or not of possible metallic charge fluctuations at the Hg or Bi ion, respectively, linked via the apex oxygen to the CuO plane, proves to be very sensitive for certain phonon modes. All the calculations are compared to the experimental results available so far. The latter, however, are rather incomplete for the Hg and Bi compounds.
在电子密度响应的微观模型中,我们计算了高温超导体 HgBa(2)CuO(4) 和 Bi(2)Sr(2)CuO(6) 的声子动力学、电荷响应和声子态密度。结果与之前对 La(2)CuO(4) 和 Nd(2)CuO(4) 的计算进行了比较。我们的主要关注点是与高频氧键伸缩模式(OBSM)相关的声子异常,这些异常之前在我们对 p 型掺杂 La(2)CuO(4) 和 n 型掺杂 Nd(2)CuO(4) 的计算中已经发现。我们研究了在 HgBa(2)CuO(4) 和 Bi(2)Sr(2)CuO(6) 中,OBSM 的特征软化和与之相关的强耦合电子是否存在的问题。特别是,我们研究了除局域的 Cu 3d 态外,更弥散的 Cu 4s 态对软化的贡献的重要性,以及由于存在几个具有与 OBSM 相同对称性的声子模式而导致的不同的反交叉行为。这使得对异常的识别变得相当复杂。此外,我们还计算了在离子层中 CuO 平面外的离子中电子极化过程对声子动力学的影响。在这种情况下,电荷响应的定性类型,即分别通过顶点氧与 CuO 平面相连的 Hg 或 Bi 离子上可能存在或不存在金属电荷波动,对于某些声子模式来说非常敏感。所有的计算都与迄今为止可用的实验结果进行了比较。然而,对于 Hg 和 Bi 化合物,后者相当不完整。