Nambu-covariant many-body theory I: Perturbative approximations

IF 3 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Annals of Physics Pub Date : 2024-07-08 DOI:10.1016/j.aop.2024.169729
M. Drissi , A. Rios , C. Barbieri
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Abstract

Symmetry-breaking considerations play an important role in allowing reliable and accurate predictions of complex systems in quantum many-body simulations. The general theory of perturbations in symmetry-breaking phases is nonetheless intrinsically more involved than in the unbroken phase due to non-vanishing anomalous Green’s functions or anomalous quasiparticle interactions. In the present paper, we develop a formulation of many-body theory at non-zero temperature which is explicitly covariant with respect to a group containing Bogoliubov transformations. Based on the concept of Nambu tensors, we derive a factorisation of standard Feynman diagrams that is valid for a general Hamiltonian. The resulting factorised amplitudes are indexed over the set of un-oriented Feynman diagrams with fully antisymmetric vertices. We argue that, within this framework, the design of symmetry-breaking many-body approximations is simplified.

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南布协变多体理论 I:惯性逼近
在量子多体模拟中,对称破缺因素在对复杂系统进行可靠而准确的预测方面发挥着重要作用。然而,由于反常格林函数或反常准粒子相互作用的非凡性,对称性破缺阶段的扰动一般理论在本质上比未破缺阶段更复杂。在本文中,我们提出了一种非零温度下的多体理论,它相对于包含波哥留布夫变换的群是显式协变的。基于南布张量的概念,我们推导出一种对一般哈密顿有效的标准费曼图因式分解。由此得到的因式分解振幅在具有完全反对称顶点的非面向费曼图集合上进行索引。我们认为,在这一框架内,对称破缺多体近似的设计得以简化。
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来源期刊
Annals of Physics
Annals of Physics 物理-物理:综合
CiteScore
5.30
自引率
3.30%
发文量
211
审稿时长
47 days
期刊介绍: Annals of Physics presents original work in all areas of basic theoretic physics research. Ideas are developed and fully explored, and thorough treatment is given to first principles and ultimate applications. Annals of Physics emphasizes clarity and intelligibility in the articles it publishes, thus making them as accessible as possible. Readers familiar with recent developments in the field are provided with sufficient detail and background to follow the arguments and understand their significance. The Editors of the journal cover all fields of theoretical physics. Articles published in the journal are typically longer than 20 pages.
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