Javascript must be enabled to continue!
QCD axion-mediated dark matter
View through CrossRef
Abstract
A QCD axion with a decay constant below 1011 GeV is a strongly-motivated extension to the Standard Model, though its relic abundance from the misalignment mechanism or decay of cosmic defects is insufficient to explain the origin of dark matter. Nevertheless, such an axion may still play an important role in setting the dark matter density if it mediates a force between the SM and the dark sector. In this work, we explore QCD axion-mediated freeze-out and freeze-in scenarios, finding that the axion can play a critical role for setting the dark matter density. Assuming the axion solves the strong CP problem makes this framework highly predictive, and we comment on experimental targets.
Springer Science and Business Media LLC
Title: QCD axion-mediated dark matter
Description:
Abstract
A QCD axion with a decay constant below 1011 GeV is a strongly-motivated extension to the Standard Model, though its relic abundance from the misalignment mechanism or decay of cosmic defects is insufficient to explain the origin of dark matter.
Nevertheless, such an axion may still play an important role in setting the dark matter density if it mediates a force between the SM and the dark sector.
In this work, we explore QCD axion-mediated freeze-out and freeze-in scenarios, finding that the axion can play a critical role for setting the dark matter density.
Assuming the axion solves the strong CP problem makes this framework highly predictive, and we comment on experimental targets.
Related Results
The QCD axion sum rule
The QCD axion sum rule
Abstract
We demonstrate that the true QCD axion that solves the strong CP problem can be found in all generality outside the customary standard QCD band, with ...
Collective phenomena in (multi)strange-hadron production at high µB: performance of the CBM experiment at FAIR
Collective phenomena in (multi)strange-hadron production at high µB: performance of the CBM experiment at FAIR
The strong force is one of the four fundamental interactions, and the theory of it is called Quantum Chromodynamics (QCD). A many-body system of strongly interacting particles (QCD...
Novel strategies for new low-mass particles searches at Colliders and from Stellar Objects
Novel strategies for new low-mass particles searches at Colliders and from Stellar Objects
Nouvelles stratégies pour la recherche de nouvelles particules légères dans les collisionneurs et des objets stellaires
Le Modèle Standard (SM) de la physique des p...
Axion Bose--Einstein Condensates and Astrophysical Implications
Axion Bose--Einstein Condensates and Astrophysical Implications
The prospect that dark matter axions may form Bose–Einstein condensates (BECs) establishes a profound connection between particle physics, condensed matter theory, and astrophysics...
Digging into Axion Physics with (Baby)IAXO
Digging into Axion Physics with (Baby)IAXO
Dark matter searches have been ongoing for three decades; the lack of a positive discovery of the main candidate, the WIMP, after dedicated efforts, has put axions and axion-like p...
Axion assisted Schwinger effect
Axion assisted Schwinger effect
Abstract
We point out an enhancement of the pair production rate of charged fermions in a strong electric field in the presence of time dependent classical axi...
Structured-light control of axion electrodynamics in topological insulator scattering
Structured-light control of axion electrodynamics in topological insulator scattering
Abstract
Topological insulators exhibit an axion-mediated magnetoelectric response that generates cross-polarised scattering channels strictl...
Axion–Sterile Neutrino Dark Matter
Axion–Sterile Neutrino Dark Matter
Extending the standard model with three right-handed neutrinos and a simple QCD axion sector can account for neutrino oscillations, dark matter and baryon asymmetry; at the same ti...

