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首页> 外文期刊>Journal of Statistical Physics >Renormalization group and ward identities in quantum liquid phases and in unconventional critical phenomena
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Renormalization group and ward identities in quantum liquid phases and in unconventional critical phenomena

机译:量子液相和非常规临界现象中的重整化群和病房身份

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By reviewing the application of the renormalization group to different theoretical problems, we emphasize the role played by the general symmetry properties in identifying the relevant running variables describing the behavior of a given physical system. In particular, we show how the constraints due to the Ward identities, which implement the conservation laws associated with the various symmetries, help to minimize the number of independent running variables. This use of the Ward identities is examined both in the case of a stable phase and of a critical phenomenon. In the first case we consider the problems of interacting fermions and bosons. In one dimension general and specific Ward identities are sufficient to show the non-Fermi-liquid character of the interacting fermion system, and also allow to describe the crossover to a Fermi liquid above one dimension. This crossover is examined both in the absence and presence of singular interaction. On the other hand, in the case of interacting bosons in the superfluid phase, the implementation of the Ward identities provides the asymptotically exact description of the acoustic low-energy excitation spectrum, and clarifies the subtle mechanism of how this is realized below and above three dimensions. As a critical phenomenon, we discuss the disorder-driven metal-insulator transition in a disordered interacting Fermi system. In this case, through the use of Ward identities, one is able to associate all the disorder effects to renormalizations of the Landau parameters. As a consequence, the occurrence of a metal-insulator transition is described as a critical breakdown of a Fermi liquid. [References: 90]
机译:通过回顾重归一化组在不同理论问题上的应用,我们强调了一般对称属性在识别描述给定物理系统行为的相关运行变量中所起的作用。特别是,我们显示了由于Ward身份而产生的约束如何实现与各种对称性相关的守恒定律,从而如何帮助减少独立运行变量的数量。在稳定阶段和严重现象的情况下,都需要检查Ward身份的使用情况。在第一种情况下,我们考虑相互作用的费米子和玻色子的问题。在一个维度上,一般和特定的Ward身份足以显示相互作用的费米子系统的非费米液体特性,也可以描述一维以上与费米液体的交叉。在不存在和存在奇异相互作用的情况下都检查了这种交叉。另一方面,在超流体相中的玻色子相互作用的情况下,沃德恒等式的实现提供了声学低能激发谱的渐近精确描述,并阐明了在以下三种情况下该实现的微妙机理。尺寸。作为一个关键现象,我们讨论了在无序相互作用的费米系统中由无序驱动的金属-绝缘体转变。在这种情况下,通过使用Ward身份,可以将所有无序效应与Landau参数的重新规范化相关联。结果,金属-绝缘体转变的发生被描述为费米液体的严重击穿。 [参考:90]

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