The impact of theoretical assumptions in the determination of the neutrino effective number from future CMB measurements
arXiv:1712.06965 · doi:10.1103/PhysRevD.97.063519
Abstract
One of the major goals of future Cosmic Microwave Background measurements is the accurate determination of the effective number of neutrinos . Reaching an experimental sensitivity of could indeed falsify the presence of any non-standard relativistic particles at c.l.. In this paper, we test how this future constraint can be affected by the removal of two common assumptions: a negligible running of the inflationary spectral index and a precise determination of the neutron lifetime . We first show that the constraints on could be significantly biased by the unaccounted presence of a running of the spectral index. Considering the Stage-IV experiment, a negative running of could mimic a positive variation of . Moreover, given the current discrepancies between experimental measurements of the neutron lifetime , we show that the assumption of a conservative error of s could bring to a systematic error of . Complementary cosmological constraints on the running of the spectral index and a solution to the neutron lifetime discrepancy are therefore needed for an accurate and reliable future CMB bound of at percent level.
7 pages, 3 figures