Vector-like quarks: status and new directions at the LHC
arXiv:2406.09193 · doi:10.21468/SciPostPhysCore.7.4.079
Abstract
Experimental searches for vector-like quarks have until now only considered their decays into Standard Model particles. However, various new physics scenarios predict additional scalars, so that these vector-like quarks can decay to new channels. These new channels reduce the branching ratios into Standard Model final states, significantly affecting current mass bounds. In this article, we quantitatively assess the relevance and observability of single and pair production processes of vector-like quarks, followed by decays into both standard and exotic final states. We highlight the importance of large widths and the relative interaction strengths with Standard Model particles and new scalars. Then, we review the post-Moriond 2024 status of these models in light of available LHC data and discuss potential future strategies to enhance the scope of vector-like quark searches.
25 pages, 7 figures; v2: minor clarifications added
References in corpus (44)
- The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations
- Beyond the Minimal Composite Higgs Model
- Vector-like Singlet Quarks: a Roadmap
- Narrow-width approximation limitations
- Search for pair production of vector-like quarks in leptonic final states in proton-proton collisions at = 13 TeV
- A search for bottom-type, vector-like quark pair production in a fully hadronic final state in proton-proton collisions at 13 TeV
- Search for single production of a vector-like quark decaying into a Higgs boson and top quark with fully hadronic final states using the ATLAS detector
- Electroweak-flavour and quark-lepton unification: a family non-universal path
- Search for pair-production of vector-like quarks in collision events at TeV with at least one leptonically decaying boson and a third-generation quark with the ATLAS detector
- Modelling vector-like quarks in partial compositeness framework
- Exploration at the high-energy frontier: ATLAS Run~2 searches investigating the exotic jungle beyond the Standard Model
- Search for pair-produced vector-like top and bottom partners in events with large missing transverse momentum in pp collisions with the ATLAS detector
- The Elusive Gluon
- New W-prime signals at the LHC
- Roadmap to explore vectorlike quarks decaying to a new scalar or pseudoscalar
- Search for single production of a vector-like T quark decaying to a top quark and a Z boson in the final state with jets and missing transverse momentum at 13 TeV
- Phenomenology of unusual top partners in composite Higgs models
- Signals with six bottom quarks for charged and neutral Higgs bosons
- Discovery prospects of a vectorlike top partner decaying to a singlet boson
- Search for a vector-like quark T tH via the diphoton decay mode of the Higgs boson in proton-proton collisions at = 13 TeV
- Search for single production of vector-like quarks decaying into or in collisions at TeV with the ATLAS detector
- Search for pair-production of vector-like quarks in lepton+jets final states containing at least one -tagged jet using the Run 2 data from the ATLAS experiment
- Machine learning-enhanced search for a vectorlike singlet quark decaying to a singlet scalar or pseudoscalar
- A natural mechanism for approximate Higgs alignment in the 2HDM
- Top-philic Dark Matter in a Hybrid KSVZ axion framework
- Exploring maverick top partner decays at the LHC
- Broad toplike vector quarks at LHC and HL-LHC
- Precision prediction of a democratic up-family philic KSVZ axion model at the LHC
- Infrared fixed point and anomalous dimensions in a composite Higgs model
- Heavy vector-like quarks decaying to exotic scalars: a case study with triplets
- Search for single vector-like quark production and decay via in collisions at TeV with the ATLAS detector
- Flavor Seesaw Mechanism
- Search for invisible particles produced in association with single top quarks in proton-proton collisions at =13 TeV with the ATLAS detector
- Search for singly produced vector-like top partners in multilepton final states with 139 of collision data at TeV with the ATLAS detector
- Search for production of a single vector-like quark decaying to tH or tZ in the all-hadronic final state in pp collisions at = 13 TeV
- Search for a heavy resonance decaying to a top quark and a W boson at 13 TeV in the fully hadronic final state
- Search for a heavy resonance decaying into a top quark and a W boson in the lepton+jets final state at 13 TeV
- A search for bottom-type vector-like quark pair production in dileptonic and fully hadronic final states in proton-proton collisions at = 13 TeV
- Vacuum misalignment in presence of four-Fermi operators
- Les Houches 2011: Physics at TeV Colliders New Physics Working Group Report
- Search for pair-produced vector-like quarks coupling to light quarks in the lepton plus jets final state using 13 TeV collisions with the ATLAS detector
- TF08 Snowmass Report: BSM Model Building
- Single Vector-Like top quark production via chromomagnetic interactions at present and future hadron colliders A Snowmass 2021 White Paper
- Phenomenological aspects of composite Higgs scenarios: exotic scalars and vector-like quarks
Cited by in corpus (10)
- Search for charged Higgs bosons through vector-like top quark pair production at the LHC
- Doubling down on down-type diquarks
- Exploring vector-like -quark pair production at CLIC in fully hadronic final states
- Searching for single production of vectorlike quarks decaying into Wb at a future muon-proton collider
- Tagging fully hadronic exotic decays of the vectorlike quark using a graph neural network
- Real and Complex Singlet-Scalar Benchmarks with a Vector-Like Down Quark for and Mixing
- The Deconstruction of Flavor in the Privately Democratic Higgs Sector
- Machine learning tagged boosted dark photon: A signature of fermionic portal matter at the LHC
- Tagging ultra-boosted jets at FCC-hh using machine learning techniques
- Higgs Yukawa coupling constraints on a benchmark one-loop radiative mass model for the bottom, charm and tau