Subleading logarithmic behavior in the parquet formalism

IF 3.7 2区 物理与天体物理 Q1 Physics and Astronomy Physical Review B Pub Date : 2025-02-27 DOI:10.1103/physrevb.111.085151
Marcel Gievers, Richard Schmidt, Jan von Delft, Fabian B. Kugler
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Abstract

The Fermi-edge singularity in x-ray absorption spectra of metals is a paradigmatic case of a logarithmically divergent perturbation series. Prior work has thoroughly analyzed the leading logarithmic terms. Here, we investigate the perturbation theory beyond leading logarithms and formulate self-consistent equations to incorporate all leading and next-to-leading logarithmic terms. This parquet solution of the Fermi-edge singularity goes beyond the previous first-order parquet solution and sheds new light on the parquet formalism regarding logarithmic behavior. We present numerical results in the Matsubara formalism and discuss the characteristic power laws. We also show that, within the single-boson exchange framework, multi-boson exchange diagrams are needed already at the leading logarithmic level. Published by the American Physical Society 2025
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拼花形式体系中的次领先对数行为
金属x射线吸收光谱中的费米边奇点是对数发散摄动序列的一个典型例子。先前的工作已经彻底地分析了主要的对数项。在这里,我们研究了超越前导对数的微扰理论,并制定了自洽方程来包含所有前导和次前导对数项。这种费米边缘奇点的拼合解超越了以前的一阶拼合解,并对对数行为的拼合形式主义提供了新的启示。给出了Matsubara形式下的数值结果,并讨论了特征幂律。我们还表明,在单玻色子交换框架内,在领先的对数水平上已经需要多玻色子交换图。2025年由美国物理学会出版
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来源期刊
Physical Review B
Physical Review B 物理-物理:凝聚态物理
CiteScore
6.70
自引率
32.40%
发文量
0
审稿时长
3.0 months
期刊介绍: Physical Review B (PRB) is the world’s largest dedicated physics journal, publishing approximately 100 new, high-quality papers each week. The most highly cited journal in condensed matter physics, PRB provides outstanding depth and breadth of coverage, combined with unrivaled context and background for ongoing research by scientists worldwide. PRB covers the full range of condensed matter, materials physics, and related subfields, including: -Structure and phase transitions -Ferroelectrics and multiferroics -Disordered systems and alloys -Magnetism -Superconductivity -Electronic structure, photonics, and metamaterials -Semiconductors and mesoscopic systems -Surfaces, nanoscience, and two-dimensional materials -Topological states of matter
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