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Equation of motion method for composite field operators

机译:复合场算子的运动方程法

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The Green's function formalism in Condensed Matter Physics is reviewed within the equation of motion approach. Composite operators and their Green's functions naturally appear as building blocks of generalized perturbative approaches and require fully self-consistent treatments in order to be properly handled. It is shown how to unambiguously set the representation of the Hilbert space by fixing both the unknown parameters, which appear in the linearized equations of motion and in the spectral weights of non-canonical operators, and the zero-frequency components of Green's functions in a way that algebra and symmetries are preserved. To illustrate this procedure some examples are given: the complete solution of the two-site Hubbard model, the evaluation of spin and charge correlators for a narrow-band Bloch system, the complete solution of the three-site Heisenberg model, and a study of the spin dynamics in the Double-Exchange model.
机译:在运动方程中回顾了凝聚态物理中的格林函数形式主义。复合算子及其格林函数自然是广义扰动方法的组成部分,并且需要完全自洽的处理才能正确处理。它显示了如何通过固定两个未知参数来明确地设置希尔伯特空间的表示形式,该参数出现在运动的线性化方程和非规范算符的频谱权重中,并且固定了格林函数中的零频分量。保持代数和对称性的方式。为了说明这一过程,给出了一些例子:两站点Hubbard模型的完整解,窄带Bloch系统自旋和电荷相关器的评估,三站点海森堡模型的完整解以及对Double-Exchange模型中的旋转动态。

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