The current most accepted paradigm for the early universe cosmology, the
inflationary scenario, shows a good agreement with the recent Cosmic Microwave
Background (CMB) and polarization data. However, when the inflation consistency
relation is relaxed, these observational data exclude a larger range of red
tensor tilt values, prevailing the blue ones which are not predicted by the
minimal inflationary models. Recently, it has been shown that the assumption of
spatial diffeomorphism invariance breaking (SDB) in the context of an effective
field theory of inflation leads to interesting observational consequences.
Among them, the possibility of generating a blue tensor spectrum, which can
recover the specific consistency relation of the String Gas Cosmology, for a
certain choice of parameters. We use the most recent CMB data to constrain the
SDB model and test its observational viability through a Bayesian analysis
assuming as reference an extended LCDM+tensor perturbation model, which
considers a power-law tensor spectrum parametrized in terms of the
tensor-to-scalar ratio, r, and the tensor spectral index, n_t. If the inflation
consistency relation is imposed, r = -8n_t, we obtain a strong evidence in
favor of the reference model whereas if such relation is relaxed, a weak
evidence in favor of the model with diffeomorphism breaking is found. We also
use the same CMB data set to make an observational comparison between the SDB
model, standard inflation and String Gas Cosmology