Photo-emission signatures of coherence breakdown in Kondo alloys: dynamical mean-field theory approach
Bishal Poudel, Claudine Lacroix, Gertrud Zwicknagl, S\'ebastien, Burdin

TL;DR
This paper uses dynamical mean-field theory to analyze photoemission signatures and phase transitions in Kondo alloys, revealing a coherence breakdown, Lifshitz transition, and a new effective mass vanishing point.
Contribution
It provides a detailed DMFT-based analysis of ARPES signals and phase diagrams in Kondo alloys, highlighting a novel transition at smaller impurity concentrations.
Findings
Identification of a Lifshitz-like transition at strong $T_K$ and $x=n_c$
Discovery of a continuous vanishing effective mass at $x^\
,
Abstract
We study the Kondo alloy model on a square lattice using dynamical mean-field theory (DMFT) for Kondo substitution and disorder effects, together with static mean-field approximations. We computed and analyzed photoemission properties as a function of electronic filling , Kondo impurity concentration , and strength of Kondo temperature . We provide a complete description of the Angle Resolved Photoemission Spectroscopy (ARPES) signals expected in the paramagnetic Kondo phases. By analyzing the Fermi surface, we observe the Lifshitz-like transition predicted previously for strong at and we discuss the evolution of the dispersion from the dense coherent to the dilute Kondo regimes. At smaller , we find that this transition marking the breakdown of coherence at becomes a crossover. However, we identify another transition at a smaller concentration…
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