English

Dark matter models with suppressed dark matter nuclei elastic cross section

High Energy Physics - Phenomenology 2024-05-07 v1

Abstract

We propose two generalizations of the dark photon model which predict the suppressed elastic dark matter nuclei cross section in comparison with the corresponding prediction of the dark photon model. In the first model the main difference from dark photon model is that the mixing parameter ϵ\epsilon is nonlocal formfactor ϵ(q2)=q2Λ2V(q2Λ2)\epsilon(q^2)= \frac{q^2}{\Lambda^2}V(\frac{q^2}{\Lambda^2}) depending on the square of the momentum transfer q2q^2. Here V(q2Λ2)V(\frac{q^2}{\Lambda^2}) is an entire function of the growth ρ12\rho \geq \frac{1}{2} and Λ\Lambda is nonlocal scale. In this model our world and dark world are described by renormalizable field theories while the communication between them is performed by nonlocal interaction. The second model is renormalizable model where besides dark photon field AA' additional vector boson ZZ' interacts with BLB - L current. The communication between our world and dark world is performed due to nonzero kinetic mixing between ZZ' and AA' fields. The predictions of the models for the search for dark matter at the accelerators don't contain additional suppression factors.

Keywords

Cite

@article{arxiv.2405.03325,
  title  = {Dark matter models with suppressed dark matter nuclei elastic cross section},
  author = {N. V. Krasnikov},
  journal= {arXiv preprint arXiv:2405.03325},
  year   = {2024}
}

Comments

12 pages

R2 v1 2026-06-28T16:17:49.749Z