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首页> 外文期刊>Physical review letters >Quasiparticle Bands in Cuprates by Quantum-Chemical Methods: Towards an Ab Initio Description of Strong Electron Correlations
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Quasiparticle Bands in Cuprates by Quantum-Chemical Methods: Towards an Ab Initio Description of Strong Electron Correlations

机译:量子化学方法在铜酸盐中的准粒子带:从头开始描述强电子相关性

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摘要

Realistic electronic-structure calculations for correlated Mott insulators are notoriously difficult. Here we present an ab initio multiconfiguration scheme that adequately describes strong correlation effects involving Cu 3d and O 2p electrons in layered cuprates. In particular, the O 2p states giving rise to the Zhang-Rice band are explicitly considered. Renormalization effects due to nonlocal spin interactions are also treated consistently. We show that the dispersion of the lowest band observed in photoemission is reproduced with quantitative accuracy. Additionally, the evolution of the Fermi surface with doping follows directly from our ab initio data. Our results thus open a new avenue for the first-principles investigation of the electronic structure of correlated Mott insulators.
机译:众所周知,相关Mott绝缘子的实际电子结构计算非常困难。在这里,我们提出了一个从头开始的多配置方案,该方案充分描述了层状铜酸盐中涉及Cu 3d和O 2p电子的强相关效应。特别地,明确考虑了引起张米带的O 2p态。归因于非局部自旋相互作用的重归一化效应也得到一致处理。我们表明,在光发射中观察到的最低能带的色散具有定量精度。此外,掺杂后费米表面的演变直接来自于我们的从头算数据。因此,我们的结果为相关Mott绝缘子的电子结构的第一性原理研究开辟了新的途径。

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