Probing Scalars, Vectors, Vector-Like Quarks, Supersymmetry, and Jet Quenching at the Large Hadron Collider
| dc.contributor.author | Umar Sohail Qureshi | |
| dc.date.accessioned | 2025-05-07T16:12:42Z | |
| dc.date.available | 2025-05-07T16:12:42Z | |
| dc.date.issued | 2025-04-14 | |
| dc.description.abstract | A model based on a U(1)T 3 R extension of the Standard Model can address the mass hierarchy between generations of fermions, explain thermal dark matter abundance, and the muon g − 2, R(D), and R(D∗) anomalies. The model contains a light scalar boson φ and a heavy vector-like quark χu that can be probed at CERN’s large hadron collider (LHC). We perform a phenomenology study on the production of φ and χu particles from proton–proton (pp) collisions at the LHC at √s = 13.6 TeV, primarily through g−g and t−χu fusion. We work under a simplified model approach and directly take the χu and φ masses as free parameters. We perform a phenomenological analysis considering χu final states to b-quarks, muons, and neutrinos, and φ decays to μ+μ−. A machine learning algorithm is used to maximize the signal sensitivity, considering an integrated luminosity of 3000 fb−1. The proposed methodology can be a key mode for discovery over a large mass range, including low masses, traditionally considered difficult due to experimental constraints. | |
| dc.description.college | College of Arts and Science | |
| dc.description.department | Department of Physics and Astronomy | |
| dc.identifier.uri | https://hdl.handle.net/1803/19580 | |
| dc.language.iso | en_US | |
| dc.publisher | Vanderbilt University. Dept. of Physics and Astronomy | |
| dc.subject.lcsh | Physics | |
| dc.title | Probing Scalars, Vectors, Vector-Like Quarks, Supersymmetry, and Jet Quenching at the Large Hadron Collider | |
| dc.type | Thesis |
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