paper

On the equivalence of models with similar low-energy quasiparticles

arXiv:1611.04550 · doi:10.1103/PhysRevB.92.214422

Abstract

We use a Metropolis algorithm to calculate the finite temperature spectral weight of three related models that have identical quasiparticles at , if the exchange favors the appearance of a ferromagnetic background. The low-energy behavior of two of the models remains equivalent at finite temperature, however that of the third does not because its low-energy behavior is controlled by rare events due to thermal fluctuations, which transfer spectral weight well below the quasiparticle peaks and generate a pseudogap-like phenomenology. Our results demonstrate that having spectra with similar quasiparticles is not a sufficient condition to ensure that two models are equivalent, {\em i.e.} that their low-energy properties are similar. We also argue that the pseudogap-like phenomenology is quite generic for models of - type, appearing in any dimension and for carriers injected into both ferromagnetic and antiferromagnetic backgrounds.

References in corpus (3)