English

Viability of Boosted Light Dark Matter in a Two-Component Scenario

High Energy Physics - Phenomenology 2025-04-25 v2 High Energy Physics - Theory

Abstract

We study the boosted dark matter (BDM) scenario in a two-component model. We consider a neutrinophilic two-Higgs doublet model (ν\nu2HDM), which consists of one extra Higgs doublet and a light right-handed neutrino. This model is extended with a light (10\sim 10~MeV) singlet scalar DM ϕ3\phi_3, which is stabilized under an extra dark Z2DMZ_2^{\rm DM} symmetry and can only effectively annihilate through the CP even scalar HH. Although oblique parameters put tight constraints on the model, introduction of vectorlike leptons (VLL) can potentially salvage the issue. The vectorlike doublet NN and singlet χ\chi are also stabilized through dark Z2DMZ_2^{\rm DM} symmetry. The lightest vectorlike mass eigenstate (χ1100\chi_1 \sim 100~GeV) is the 2nd DM component of the model. The fermion DM is restricted in a narrow mass region while a somewhat broader mass region is allowed for the scalar DM. However, when two DM sectors are coupled, the annihilation channel χ1χ1ϕ3ϕ3\chi_1 \chi_1 \to \phi_3 \phi_3 opens up. As a result, the fermionic relic density decreases, and paves way for broader fermionic DM mass region with under-abundant relic: a region of [3065][30-65] GeV compared to a narrower [4050][40-50] GeV window for the single component case. On the other hand, the light DM ϕ3\phi_3 acquires significant boost from the annihilation of χ1\chi_1, causing a dilution in the resonant annihilation of ϕ3\phi_3. This in turn increases the scalar DM relic, allowing for a smaller mass region compared to the individual case. The exact and underabundant relic is achievable in a significant parameter space of the two-component model where the total DM relic is mainly dominated by the fermionic DM contribution. The scalar DM is found to be sub-dominant or equally dominant (30%80%\sim 30 \% - 80 \% of total DM) with significant boost which can be detected in experiments.

Keywords

Cite

@article{arxiv.2310.09349,
  title  = {Viability of Boosted Light Dark Matter in a Two-Component Scenario},
  author = {Arindam Basu and Amit Chakraborty and Nilanjana Kumar and Soumya Sadhukhan},
  journal= {arXiv preprint arXiv:2310.09349},
  year   = {2025}
}

Comments

30 pages, 14 figures, 6 tables; v2: restructure of the draft, a few more constraints are added, accepted for publication in PRD