Fermi surface instabilities at finite temperature

P Rodríguez Ponte, D Cabra, N Grandi - The European Physical Journal B, 2013 - Springer
The European Physical Journal B, 2013Springer
We present a new method to detect Fermi surface instabilities for interacting systems at finite
temperature. We first apply it to a list of cases studied previously, recovering already known
results in a very economic way, and obtaining most of the information on the phase diagram
analytically. As an example, in the continuum limit we obtain the critical temperature as an
implicit function of the magnetic field and the chemical potential T c (μ, h). By applying the
method to a model proposed to describe reentrant behavior in Sr 3 Ru 2 O 7, we reproduce …
Abstract
We present a new method to detect Fermi surface instabilities for interacting systems at finite temperature. We first apply it to a list of cases studied previously, recovering already known results in a very economic way, and obtaining most of the information on the phase diagram analytically. As an example, in the continuum limit we obtain the critical temperature as an implicit function of the magnetic field and the chemical potential T c (μ,h). By applying the method to a model proposed to describe reentrant behavior in Sr3Ru2O7, we reproduce the phase diagram obtained experimentally and show the presence of a non-Fermi Liquid region at temperatures above the nematic phase.
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