paper

Displaced Drude peak from -ton vertex corrections

arXiv:2402.16104 · doi:10.1103/PhysRevB.110.075118

Abstract

Correlated electron systems often show strong bosonic fluctuations, e.g., of antiferromagnetic nature, around a large wave vector such as . These fluctuations can give rise to vertex corrections to the optical conductivity through the (transversal) particle-hole channel, coined -ton contributions. Previous numerical results differed qualitatively on how such vertex corrections alter the optical conductivity. Here, we clarify that -ton vertex corrections lead to a displaced Drude peak for correlated metals. The proximity and enhancement of the effect when approaching a phase transition of, e.g., antiferromagnetic nature can be utilized for discriminating -tons in experiments from other physics leading to a displaced Drude peak.

12 pages, 7 figures

Displaced Drude peak from $π$-ton vertex corrections · wovepaper