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The 3.5 keV Line from Stringy Axions

High Energy Physics - Theory 2017-11-22 v3 High Energy Astrophysical Phenomena High Energy Physics - Phenomenology

Abstract

An interesting result in particle astrophysics is the recent detection of an unexplained 3.5 keV line from galaxy clusters. A promising model, which can explain the morphology of the signal and its non-observation in dwarf spheroidal galaxies, involves a 7 keV dark matter particle decaying into a pair of ultra-light axions that convert into photons in the magnetic field of the clusters. Given that light axions emerge naturally in 4D string vacua, in this paper we present a microscopic realisation of this model within the framework of type IIB flux compactifications. Dark matter is a local closed string axion which develops a tiny mass due to subdominant poly-instanton corrections to the superpotential and couples via kinetic mixing to an almost massless open string axion living on a D3-brane at a singularity. The interaction of this ultra-light axion with photons is induced by U(1) kinetic mixing. After describing the Calabi-Yau geometry and the brane set-up, we discuss in depth moduli stabilisation, the resulting mass spectrum and the strength of all relevant couplings.

Keywords

Cite

@article{arxiv.1707.02987,
  title  = {The 3.5 keV Line from Stringy Axions},
  author = {Michele Cicoli and Victor A. Diaz and Veronica Guidetti and Markus Rummel},
  journal= {arXiv preprint arXiv:1707.02987},
  year   = {2017}
}

Comments

27 pages + appendices, 1 figure; typos corrected, references added, additional comments on the cosmological history and DM production in the conclusions

R2 v1 2026-06-22T20:42:48.550Z