arXiv:1905.09836·v2·High Energy Physics — Phenomenology
Misalignment & Co.: (Pseudo-)scalar and vector dark matter with curvature couplings
Gonzalo Alonso Álvarez · Joerg Jaeckel🇩🇪 · Thomas Hugle🇩🇪
Abstract
Motivated by their potential role as dark matter, we study the cosmological evolution of light scalar and vector fields non-minimally coupled to gravity. Our focus is on a situation where the dominant contribution to the energy density arises from the misalignment mechanism. In addition, we also discuss the possibility that dark matter is generated in a stochastic scenario or from inflationary fluctuations. Even small deviations in the non-minimal couplings from the standard scenarios lead to significant qualitative and quantitative changes. This is due to the curvature-coupling driven superhorizon evolution of the homogeneous field and the non-zero momentum modes during inflation. Both the relic density yield and the large-scale density fluctuations are affected. For the misalignment mechanism, this results in a weakening of the isocurvature constraints and opens up new viable regions of parameter space.
Comments: 25 pages, 8 figures. References updated and discussion of vector longitudinal modes expanded