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Non-Fermi-liquid metals in low dimensions

机译:低尺寸的非费米液态金属

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摘要

In low-dimensional metals the presence of massless excitations may lead to a breakdown of the Landau Fermi-liquid description, which successfully applies to higher-dimensional metals. This breakdown is mirrored by infrared divergences which plague the perturbative treatment of models for low-dimensional metals, despite the fact that the metallic phase is a stable liquid phase of the matter. However, the very condition of stability of the system implies exact cancellations among the singular terms in the response functions, controlled by additional Ward identities, which must be considered besides the standard Ward identities related to the conservation of the total particle and spin density. The combined use of renormalization group and of these Ward identities allows for the closure of the renormalization-group equations, leading to the description of the asymptotic (infrared) behavior of the low-dimensional metal.
机译:在低维金属中,无质量激发的存在可能会导致Landau费米液体描述的破裂,从而成功地应用于高维金属。尽管金属相是该物质的稳定液相,但红外散射反映了这种破坏,红外散射困扰了低维金属模型的微扰处理。然而,系统稳定性的条件意味着响应函数中单数项之间的精确抵消,这由附加的Ward身份控制,除了与保留总粒子和自旋密度有关的标准Ward身份外,还必须考虑这些因素。重整化组和这些Ward身份的组合使用允许重整化组方程的闭合,从而导致对低维金属的渐近(红外)行为的描述。

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