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arXiv:1803.06910·v3·Cosmology and Nongalactic Astrophysics

Exploring neutrino mass and mass hierarchy in the scenario of vacuum energy interacting with cold dark matter

Rui-Yun Guo🇨🇳 · Jing-Fei Zhang🇨🇳 · Xin Zhang🇨🇳

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Abstract

We investigate the constraints on total neutrino mass in the scenario of vacuum energy interacting with cold dark matter. We focus on two typical interaction forms, i.e., and . To avoid the occurrence of large-scale instability in interacting dark energy cosmology, we adopt the parameterized post-Friedmann approach to calculate the perturbation evolution of dark energy. We employ observational data, including the Planck cosmic microwave background temperature and polarization data, baryon acoustic oscillation data, a JLA sample of type Ia supernovae observation, direct measurement of the Hubble constant, and redshift space distortion data. We find that, compared with those in the CDM model, much looser constraints on are obtained in the model, whereas slightly tighter constraints are obtained in the model. Consideration of the possible mass hierarchies of neutrinos reveals that the smallest upper limit of appears in the degenerate hierarchy case. By comparing the values of , we find that the normal hierarchy case is favored over the inverted one. In particular, we find that the difference in the model. In addition, we find that is consistent with the current observations in the model, and is favored at more than the level in the model.

Comments: 10 pages, 4 figures

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