Exploring Freeze-out and Freeze-in Dark Matter via Effective Froggatt-Nielsen Theory
arXiv:2307.14972 · doi:10.1088/1475-7516/2023/11/074
Abstract
Motivated by the dynamical reasons for the hierarchical structure of the Yukawa sector of the Standard Model (SM), we consider an extension of the SM with a complex scalar field, known as `flavon', based on the Froggatt-Nielsen mechanism. In an effective theory approach, the SM fermion masses and mixing patterns are generated in orders of the parameter related to the vacuum expectation value of the flavon field and the cut-off of the effective theory. By introducing right-handed neutrinos, we study the viability of the lightest right-handed neutrino as a dark matter candidate, where the same flavon field acts as a mediator between the dark and the SM sectors. We find that dark matter genesis is achieved both through freeze-out and freeze-in mechanisms encompassing the -- mass range of the mediator and the dark matter particle. In addition to tree-level spin-dependent cross section, the model gives rise to tree- and loop-level contributions to spin-independent scattering cross section at the direct detection experiments such as XENON and LUX-ZEPLIN which can be probed in their future upgrades. By choosing suitable Froggatt-Nielsen charges for the fermions, we also generate the mass spectrum of the SM neutrinos via the Type-I seesaw mechanism. Flavor-changing neutral current processes, such as radiative lepton decay, meson mixing, and top-quark decay remain the most constraining channels and provide testability for this minimal setup that addresses several major shortcomings of the SM.
37 pages, 8 figures. Version accepted for publication in JCAP
References in corpus (24)
- FeynRules - Feynman rules made easy
- micrOMEGAs2.0: a program to calculate the relic density of dark matter in a generic model
- First Dark Matter Search Results from the LUX-ZEPLIN (LZ) Experiment
- The Dawn of FIMP Dark Matter: A Review of Models and Constraints
- First Dark Matter Search with Nuclear Recoils from the XENONnT Experiment
- DARWIN: towards the ultimate dark matter detector
- Dark Matter Search Results from the Complete Exposure of the PICO-60 CF Bubble Chamber
- Non-relativistic effective theory of dark matter direct detection
- Flaxion: a minimal extension to solve puzzles in the standard model
- On Effective Degrees of Freedom in the Early Universe
- Fog on the horizon: a new definition of the neutrino floor for direct dark matter searches
- Standard Model anatomy of WIMP dark matter direct detection II: QCD analysis and hadronic matrix elements
- theory precision confronts flavour anomalies
- Gluon contribution to the dark matter direct detection
- Improved limits for Higgs-portal dark matter from LHC searches
- Directional recoil detection
- A Classification of Dark Matter Candidates with Primarily Spin-Dependent Interactions with Matter
- Can we overcome the neutrino floor at high masses?
- Axion-like particles as mediators for dark matter: beyond freeze-out
- Indirect dark-matter detection with MadDM v3.2 -- Lines and Loops
- Search for a new scalar resonance in flavour-changing neutral-current top-quark decays (), with , in proton-proton collisions at TeV with the ATLAS detector
- Dark matter production through a non-thermal flavon portal
- FIMP Dark Matter from Flavon Portals
- Seesaw neutrino dark matter by freeze-out