On minimal residual entropy in non-Fermi liquids
Abstract
In the large limit a physical system might acquire a residual entropy at zero temperature even without ground state degeneracy. At the same time poles in the 2-point function might coalesce and form a branch cut. Both phenomena are related to a high density of states in the large limit. In this short note we address the question: does a branch cut in the 2-point function always lead to non-zero residual entropy? We argue that for generic fermionic systems in dimensions in the mean-field approximation the answer is positive: branch cut in the 2-point function does lead to a lower bound for the entropy. We also comment on higher-dimensional generalizations and relations to the holographic correspondence.
Keywords
Cite
@article{arxiv.2207.01588,
title = {On minimal residual entropy in non-Fermi liquids},
author = {Alexey Milekhin},
journal= {arXiv preprint arXiv:2207.01588},
year = {2022}
}
Comments
14 pages + one appendix, 3 Figures. v2: comments added