Distinguishing nonstandard scalar and fermionic charged particles at future collider
arXiv:2206.11560 · doi:10.1103/PhysRevD.107.035002
Abstract
We investigate the possibility to identify the nature of spin of exotic charged particles at the future collider in final state choosing IDM and MSSM as examples for the new physics models with scalar and fermionic exotic charged particles, respectively. We choose four benchmarks for the mass parameters for a significant deviation from the SM background. We find that the of boson constructed from pair and lepton have the potential to identify the MSSM signal compared to the IDM signal in longitudinally polarized initial beams. A more robust comparison is seen in the shape of the azimuthal angle of the boson and charged lepton, which can identify the IDM signal further if the beams are transversely polarized.
31 pages, 6 figures and 5 tables
References in corpus (9)
- An Introduction to PYTHIA 8.2
- Improved Naturalness with a Heavy Higgs: An Alternative Road to LHC Physics
- Search for invisible decays of the Higgs boson produced via vector boson fusion in proton-proton collisions at 13 TeV
- Dark Matter candidate in a Heavy Higgs Model - Direct Detection Rates
- A model independent spin analysis of fundamental particles using azimuthal asymmetries
- Transverse beam polarization and CP-violating triple-gauge-boson couplings in e+e- -> gamma Z
- Measuring mass and spin of Dark Matter particles with the aid energy spectra of single lepton and dijet at the Linear Collider
- Use of Transverse polarization to probe R-parity violating supersymmetry at ILC
- Decoding Dark Matter at future colliders