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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Spin and charge fluctuations in the two-band Hubbard model
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Spin and charge fluctuations in the two-band Hubbard model

机译:双频隆堡模型中的旋转和电荷波动

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A model of CuO2 planes of cuprate perovskites, containing d(x)(2-y2) copper orbitals and symmetric combinations of oxygen p(sigma) orbitals, is investigated using the strong coupling diagram technique. This approach allows one to take into account the interactions of carriers with spin and charge fluctuations of all ranges. Derived equations for Green's function are self-consistently solved for the set of parameters corresponding to hole- and electron-doped cuprates. It is shown that the mentioned interactions lead to the appearance of spin polarons - bound states of carriers with spin excitations, which show themselves as sharp peaks of the density of states and spectral functions at the Fermi level. Hole and electron doping are strongly asymmetric. This, in particular, manifests itself in the antiferromagnetic response for the electron-doped case and in an incommensurate magnetic ordering for hole doping. In the latter case, the incommensurability parameter grows with doping. The double occupancy shows that the electron-doped system retains strong correlations up to the concentration 0.23, while for hole doping the correlations decay rapidly. These results are in agreement with experimental observations in cuprates. Graphical abstract
机译:使用强耦合图技术研究了含有D(x)(2-y2)铜轨道和氧p(sigma)轨道的对称组合的CuO 2的Cuo2钙玻璃模型。这种方法允许人们考虑载流子与所有范围的旋转和电荷波动的相互作用。对于与孔和电子掺杂的铜酸盐相对应的一组参数,绿色函数的衍生方程是自始终解决的。结果表明,所提述的相互作用导致旋转激发的螺旋极性载流子的旋转极性态的外观,这表明自己作为尖锐峰的状态密度和FERMI水平的光谱函数。孔和电子掺杂强烈不对称。特别地,这在电子掺杂壳体和孔掺杂的不称称磁性排序中表现在反铁磁响应中。在后一种情况下,即掺杂的即个性的参数增长。双重占用率表明,电子掺杂的系统保持强烈的相关性,其浓度为0.23,而对于孔迅速衰减,孔掺杂孔。这些结果符合铜酸盐中的实验观察结果。图形概要

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