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arXiv:2401.16219·v3·High Energy Physics — Phenomenology

Anatomy of Vector-Like Top-Quark Models in the Alignment Limit of the 2-Higgs Doublet Model Type-II

Abdesslam Arhrib (1)🇲🇦 · Rachid Benbrik (2)🇲🇦 · Mohammed Boukidi (2)🇲🇦 · Bouzid Manaut (3)🇲🇦 · Stefano Moretti (4) (5) ((1) Abdelmalek Essaadi University, Faculty of Sciences and Techniques, Tangier, Morocco, (2) Polydisciplinary Faculty, Laboratory of Fundamental and Applied Physics, Cadi Ayyad University, Sidi Bouzid, Safi, Morocco, (3) Polydisciplinary Faculty, Laboratory of Research in Physics and Engineering Sciences, Sultan Moulay Slimane University, Beni Mellal, Morocco, (4) School of Physics and Astronomy, University of Southampton, United Kingdom, (5) Department of Physics and Astronomy, Uppsala University, Uppsala, Sweden)🇬🇧

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Abstract

A comprehensive extension of the ordinary 2-Higgs Doublet Model (2HDM), supplemented by Vector-Like Quarks (VLQs), in the "alignment limit" is presented. In such a scenario, we study the possibility that Large Hadron Collider (LHC) searches for VLQs can profile their nature too, i.e., whether they belong to a singlet, doublet, or triplet representation. To achieve this, we exploit both Standard Model (SM) decays of VLQs with top-(anti)quark Electromagnetic (EM) charge (), i.e., into quarks and bosons (which turn out to be suppressed and hence states can escape existing limits) as well as their exotic decays, i.e., into (and possibly ) quarks and bosons. We show that quite specific decay patterns emerge in the different VLQ representations so that, depending upon which signals are accessed at the LHC, one may be able to ascertain the underlying Beyond Standard Model (BSM) structure, especially if mass knowledge of the new fermionic and bosonic sectors can be inferred from (other) data.

Comments: 30 pages, 21 figures. Matches the published version in EPJC. The x-axis and y-axis labels of Figure 11 (right) have been corrected

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