Bounds on the Tsallis Parameter from a deformed Neutrino Sector in the Early Universe

Abstract

We generalize neutrino energy density content in the early universe near BBN era T1 MeV within Tsallis nonextensive statistics. By using Curado-Tsallis constraints we obtain generalized distribution functions fq(E). We compute the generalized thermodynamic integral for the energy density q. We define a reescaling R( = +1)(q) = q/ std which is a ratio between the deformed energy density and the standard extensive case. The last was used to directly map and deform neutrino content via the effective number of neutrinos N eff. The deformation prediction was confronted against CMB+BAO and BBN data for N eff by a joint/combined 2 type-fit. We obtained the constraints |q-1| 1.09× 10-2 (95\% CL) and |q-1| 1.32× 10-2 (99\% CL) from the combined analysis by numerically calculating the best value of the Tsallis parameter q best.

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