Bounds reach of a future circular collider on the parameters of a minimal Baryon-Lepton symmetric model
arXiv:2507.19828 · doi:10.1093/ptep/ptaf177
Abstract
This paper investigates the physics potential of the proton-proton Future Circular Collider (FCC-hh) in the search for a new heavy gauge boson, Z', within the framework of the minimal Baryon-Lepton (B-L) symmetric model. We examine the exclusion limits on the mass of the Z' boson for various sets of coupling constants, utilizing leptonic decays, specifically into charged lepton pairs (electron and muon). Using the DARKCAST framework, we compare the parameter constraints derived from previous experiments with the expected reach of the FCC-hh, providing insights into the collider sensitivity and potential to probe new physics beyond the Standard Model.
7 pages, 3 figure
References in corpus (12)
- The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations
- Search for a dark photon in e+e- collisions at BABAR
- The Minimal Set of Electroweak Precision Parameters
- Search for dark matter produced in association with a leptonically decaying Z boson in proton-proton collisions at 13 TeV
- discovery potential at the LHC in the minimal extension of the Standard Model
- Solving the electron and muon anomalies in models
- Dark sector searches with the CMS experiment
- Heavy resonances at energy-frontier hadron colliders
- Probing the minimal model at future electron-positron colliders via the fermion pair-production channel
- Heavy-ion physics studies for the Future Circular Collider
- Probing chiral and flavored from cosmic bursts through neutrino interactions
- Probing for chiral gauge boson through scattering measurement experiments