R-parity Conserving Minimal SUSY U(1)$_{X}$ Model
Satsuki Oda, Nobuchika Okada, Nathan Papapietro, and Dai-suke, Takahashi

TL;DR
This paper introduces a minimal U(1)$_X$ extension of the MSSM with R-parity conservation, addressing anomaly cancellation, neutrino mass structure, dark matter candidates, and collider constraints in a unified framework.
Contribution
It proposes a novel U(1)$_X$ model with unique R-parity assignments, absence of U(1)$_X$ Higgs fields, and explores its implications for neutrino masses, dark matter, and collider phenomenology.
Findings
The model predicts one massless and two Dirac neutrinos.
A new dark matter candidate arises from the U(1)$_X$ gaugino and $\\Psi$ fermion.
Constraints from BBN, relic density, and LHC narrow the parameter space.
Abstract
We propose a minimal gauged U(1) extension of the MSSM with R-parity conservation. In this model, U(1) is a generalization of the well-known U(1) . Apart from the MSSM particle content, the model includes three right-handed neutrino (RHN) chiral superfields, each carrying a unit U(1) charge. In the presence of RHNs, the model is free from all gauge and mixed gauge-gravitational anomalies. However, there are no U(1) Higgs chiral superfields with U(1) charge involved in the model. Two of the RHN superfields are assigned an odd R-parity, while the last one () has an even parity. The U(1) symmetry is radiatively broken by the VEV of the scalar component of . As a consequence of the absence of U(1) Higgs fields and the novel R-parity assignment, the three light neutrinos consist of one massless neutrino and two Dirac neutrinos. In the early…
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Taxonomy
TopicsParticle physics theoretical and experimental studies · Black Holes and Theoretical Physics · Neutrino Physics Research
