arXiv:1403.7028·v5·Cosmology and Nongalactic Astrophysics
Sterile neutrinos help reconcile the observational results of primordial gravitational waves from Planck and BICEP2
Jing-Fei Zhang🇨🇳 · Yun-He Li🇨🇳 · Xin Zhang🇨🇳
Abstract
We show that involving a sterile neutrino species in the CDM+ model can help relieve the tension about the tensor-to-scalar ratio between the Planck temperature data and the BICEP2 B-mode polarization data. Such a model is called the CDM++ model in this paper. Compared to the CDM+ model, there are two extra parameters, and , in the CDM++ model. We show that in this model the tension between Planck and BICEP2 can be greatly relieved at the cost of the increase of . However, comparing with the CDM++ model that can significantly reduce the tension between Planck and BICEP2 but also makes trouble to inflation due to the large running of the spectral index of order produced, the CDM++ model is much better for inflation. By including a sterile neutrino species in the standard cosmology, besides the tension with BICEP2, the other tensions of Planck with other astrophysical data, such as the direct measurement, the Sunyaev-Zeldovich cluster counts, and the galaxy shear data, can all be significantly relieved. So, this model seems to be an economical choice. Combining the Planck temperature data, the WMAP-9 polarization data, and the baryon acoustic oscillation data with all these astrophysical data (including BICEP2), we find that in the CDM++ model , , and eV. Thus, our results prefer at the 2.7 level and a nonzero mass of sterile neutrino at the 3.9 level.
Comments: 5 pages, 3 figures