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Existence of a metallic phase in a 1D Holstein–Hubbard model at half filling

机译:一维Holstein-Hubbard模型中半填充状态下金属相的存在

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The one-dimensional half-filled Holstein–Hubbard model is studied using a series of canonical transformations including phonon coherence effect that partly depends on the electron density and is partly independent and also incorporating the on-site and the nearest-neighbour phonon correlations and the exact Bethe-ansatz solution of Lieb and Wu. It is shown that choosing a better variational phonon state makes the polarons more mobile and widens the intermediate metallic region at the charge-density-wave–spin-density-wave crossover recently predicted by Takada and Chatterjee. The presence of this metallic phase is indeed a favourable situation from the point of view of high temperature superconductivity.
机译:一维半填充的Holstein-Hubbard模型是通过一系列典型变换研究的,其中包括声子相干效应,声子相干效应部分取决于电子密度,部分独立,并且还结合了现场声子和最近邻声子相关性以及Lieb和Wu的精确Bethe-ansatz解。结果表明,选择更好的变分声子态可以使极化子更具运动性,并拓宽了Takada和Chatterjee最近预测的电荷密度波-自旋密度波交叉处的中间金属区域。从高温超导性的观点来看,这种金属相的存在确实是有利的情况。

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