English

R-parity Conserving Minimal SUSY U(1)$_{X}$ Model

High Energy Physics - Phenomenology 2023-08-01 v1 Cosmology and Nongalactic Astrophysics High Energy Physics - Experiment

Abstract

We propose a minimal gauged U(1)X_X extension of the MSSM with R-parity conservation. In this model, U(1)X_X is a generalization of the well-known U(1) BLB-L. Apart from the MSSM particle content, the model includes three right-handed neutrino (RHN) chiral superfields, each carrying a unit U(1)X_X charge. In the presence of RHNs, the model is free from all gauge and mixed gauge-gravitational anomalies. However, there are no U(1)X_X Higgs chiral superfields with U(1)X_X charge ±2\pm2 involved in the model. Two of the RHN superfields are assigned an odd R-parity, while the last one (Ψ\Psi) has an even parity. The U(1)X_X symmetry is radiatively broken by the VEV of the scalar component of Ψ\Psi. As a consequence of the absence of U(1)X_X Higgs fields and the novel R-parity assignment, the three light neutrinos consist of one massless neutrino and two Dirac neutrinos. In the early universe, the right-handed components of the Dirac neutrinos are in thermal equilibrium with the SM particles through the U(1)X_X gauge (ZZ^\prime) boson. The extra energy density from the RHNs is constrained to avoid disrupting the success of BBN, leading to a lower bound on the scale of U(1)X_X symmetry breaking. In our model, a mixture of the U(1)X_X gaugino and the fermionic component of Ψ\Psi becomes a new dark matter (DM) candidate if it is the lightest sparticle mass eigenstate. We examine this DM phenomenology and identify a parameter region that reproduces the observed DM relic density. Furthermore, we consider constraints from the search for ZZ' boson resonance at the LHC. The three constraints obtained from the success of BBN, the observed DM relic density, and the ZZ^\prime resonance search at the LHC complement each other, narrowing down the allowed parameter region.

Keywords

Cite

@article{arxiv.2307.16480,
  title  = {R-parity Conserving Minimal SUSY U(1)$_{X}$ Model},
  author = {Satsuki Oda and Nobuchika Okada and Nathan Papapietro and Dai-suke Takahashi},
  journal= {arXiv preprint arXiv:2307.16480},
  year   = {2023}
}

Comments

23 pages, 5 figures. arXiv admin note: text overlap with arXiv:1603.01769

R2 v1 2026-06-28T11:44:10.163Z