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Free and spin-polaron states in high T{sub}c superconductors

机译:在高t {sub} c超导体中的自由和旋转极化态状态

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Hole states in the antiferromagnetically ordered CuO{sub}2 planes of cuprate perovskites are calculated within the three-band Hubbard model and with a self-consistent calculation of the Cu spin polarization. It is found that in the low doping limit the spin-polaron and the free-hole states are separated by a barrier of energy ~0.05eV. At finite dopings the spin-polaron states become less favorable and at high doping they turn out to be metastable. In case of high mobility of donors a phase separation of the charge carriers into domains with a local hole concentration c ~ 0.5 takes place. This explains experimentally observed formation of stripe domains with local hole concentrations c = 0.5.
机译:在三频隆型模型内计算铜替代的CuO {Sub} 2的孔状态。计算Cu自旋极化的自一致计算。发现,在低掺杂极限中,旋转极化子和自由孔状态被屏障与0.05EV的能量屏障分开。在有限的掺杂时,旋转极化态状态变得不那么有利,并且在高掺杂时它们会出现含量。在供体的高迁移率的情况下,电荷载体将电荷载体与局部空穴浓度C〜0.5的域分离。这解释了通过局部空穴浓度C = 0.5的局部孔浓度的条纹结构域的形成。

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