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Quasi-particle peak due to magnetic order in strongly correlated electron systems

机译:强相关电子系统中由于磁序的准粒子峰

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We study the electron spectral function of the antiferromagnetically ordered phase of the three dimensional Hubbard model, using recently formulated low-energy theory based on the 2D half-filled Hubbard model which describes both collective spin and charge fluctuations for arbitrary value of the Coulomb repulsion U. The model then is solved by a saddle-point approximation within the CP1 representation for the Neel field. The single-particle properties are obtained by writing the fermion field in terms of a U(1) phase, Schwinger boson SU(2) fields and a pseudofermion variables. We demonstrate that the appearance of a sharp peak in the electron spectral function in the antiferromagnetic state points to the emergence of the bosonic mode, which is associated with spin ordering.
机译:我们使用最近基于二维半填充式Hubbard模型制定的低能理论来研究三维Hubbard模型的反铁磁有序相的电子光谱函数,该理论描述了库伦斥力U的任意值的集体自旋和电荷涨落然后,通过Neel场的CP 1 表示内的鞍点近似来求解模型。通过根据U(1)相,费辛格玻色子SU(2)场和伪费米子变量写费米子场来获得单粒子属性。我们证明在反铁磁状态下电子光谱函数中一个尖峰的出现指示了与自旋有序相关的玻色子模式的出现。

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