English

Anthropic Bound on Dark Radiation and its Implications for Reheating

Cosmology and Nongalactic Astrophysics 2019-07-17 v3 High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

We derive an anthropic bound on the extra neutrino species, ΔNeff\Delta N_{\rm eff}, based on the observation that a positive ΔNeff\Delta N_{\rm eff} suppresses the growth of matter fluctuations due to the prolonged radiation dominated era, which reduces the fraction of matter that collapses into galaxies, hence, the number of observers. We vary ΔNeff\Delta N_{\rm eff} and the positive cosmological constant while fixing the other cosmological parameters. We then show that the probability of finding ourselves in a universe satisfying the current bound is of order a few percents for a flat prior distribution. If ΔNeff\Delta N_{\rm eff} is found to be close to the current upper bound or the value suggested by the H0H_0 tension, the anthropic explanation is not very unlikely. On the other hand, if the upper bound on ΔNeff\Delta N_{\rm eff} is significantly improved by future observations, such simple anthropic consideration does not explain the small value of ΔNeff\Delta N_{\rm eff}. We also study simple models where dark radiation consists of relativistic particles produced by heavy scalar decays, and show that the prior probability distribution sensitively depends on the number of the particle species.

Keywords

Cite

@article{arxiv.1904.12864,
  title  = {Anthropic Bound on Dark Radiation and its Implications for Reheating},
  author = {Fuminobu Takahashi and Masaki Yamada},
  journal= {arXiv preprint arXiv:1904.12864},
  year   = {2019}
}

Comments

14 pages, 4 figures; V2: Added references; V3: Published version, Added the anthropic bound on the number of neutrino flavors

R2 v1 2026-06-23T08:52:37.927Z