English

A Dynamical Framework for KeV Dirac Neutrino Warm Dark Matter

High Energy Physics - Phenomenology 2014-09-05 v3

Abstract

If the source of the reported 3.53.5 keV x-ray line is a sterile neutrino, comprising an O(1)\mathcal{O}(1) fraction of the dark matter (DM), then it exhibits the property that its mass times mixing angle is \mboxfew×102\sim \mbox{few} \times 10^{-2} eV, a plausible mass scale for the active neutrinos. This property is a common feature of Dirac neutrino mixing. We present a framework that dynamically produces light active and keV sterile Dirac neutrinos, with appropriate mixing angles to be the x-ray line source. The central idea is that the right-handed active neutrino is a composite state, while elementary sterile neutrinos gain keV masses similarly to the quarks in extended Technicolor. The entire framework is fixed by just two dynamical scales and may automatically exhibit a warm dark matter (WDM) production mechanism -- dilution of thermal relics from late decays of a heavy composite neutrino -- such that the keV neutrinos may comprise an O(1)\mathcal{O}(1) fraction of the DM. In this framework, the WDM is typically quite cool and within structure formation bounds, with temperature \mboxfew×102 Tν\sim \mbox{few}\times 10^{-2}~T_\nu and free-streaming length \sim few kpc. A toy model that exhibits the central features of the framework is also presented.

Keywords

Cite

@article{arxiv.1404.7118,
  title  = {A Dynamical Framework for KeV Dirac Neutrino Warm Dark Matter},
  author = {Dean J. Robinson and Yuhsin Tsai},
  journal= {arXiv preprint arXiv:1404.7118},
  year   = {2014}
}

Comments

9 pages, fig 2 added, published version

R2 v1 2026-06-22T04:00:52.660Z