Vector-Like Quarks at the LHC: A Unified Perspective from ATLAS and CMS Exclusion Limits

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Main Authors: Benbrik, Rachid, Boukidi, Mohammed, Ech-chaouy, Mohamed, Moretti, Stefano, Salime, Khawla, Yan, Qi-Shu
Format: Preprint
Published: 2024
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author Benbrik, Rachid
Boukidi, Mohammed
Ech-chaouy, Mohamed
Moretti, Stefano
Salime, Khawla
Yan, Qi-Shu
author_facet Benbrik, Rachid
Boukidi, Mohammed
Ech-chaouy, Mohamed
Moretti, Stefano
Salime, Khawla
Yan, Qi-Shu
contents In this work, we present a comprehensive review of the most up-to-date exclusion limits on Vector-Like Quarks (VLQs) derived from ATLAS and CMS data at the Large Hadron Collider (LHC). Our analysis encompasses both pair and single production modes, systematically comparing results from the two collaborations to identify and employ the most stringent bounds at each mass point. We evaluate the excluded parameter space for VLQs under singlet, doublet, and triplet representations. For top-like VLQs ($T$), the exclusion limits rule out masses up to 1.49 TeV in singlet scenarios, while single production constrains the mixing parameter $κ$ to values below 0.26 at $m_T \sim 1.5$ TeV and up to 0.42 for $m_T \sim 2$ TeV. For bottom-like VLQs ($B$), the strongest exclusion limits from pair production exclude masses up to 1.52 TeV in doublet configurations, with single production constraining $κ$ values between 0.2 and 0.7 depending on the mass. For exotic VLQs, such as $X$ and $Y$, pair production excludes masses up to 1.46 TeV and 1.7 TeV, respectively. The constraints on $κ$ from these analyses become increasingly restrictive at higher masses, reflecting the enhanced sensitivity of single production channels in this regime. For $X$, $κ$ is constrained below 0.16 for masses between 0.8 and 1.6 TeV and further tightens to $κ< 0.2$ as the mass approaches 1.8 TeV. Similarly, for $Y$, $κ$ values are constrained below 0.26 around $m_Y \sim 1.7$ TeV, with exclusions gradually relaxing at higher masses. These exclusion regions, derived from the most stringent LHC search results, offer a unified and up-to-date perspective on VLQ phenomenology. The results were computed using \texttt{VLQBounds}, a new Python-based tool specifically developed for this purpose.
format Preprint
id arxiv_https___arxiv_org_abs_2412_01761
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Vector-Like Quarks at the LHC: A Unified Perspective from ATLAS and CMS Exclusion Limits
Benbrik, Rachid
Boukidi, Mohammed
Ech-chaouy, Mohamed
Moretti, Stefano
Salime, Khawla
Yan, Qi-Shu
High Energy Physics - Phenomenology
In this work, we present a comprehensive review of the most up-to-date exclusion limits on Vector-Like Quarks (VLQs) derived from ATLAS and CMS data at the Large Hadron Collider (LHC). Our analysis encompasses both pair and single production modes, systematically comparing results from the two collaborations to identify and employ the most stringent bounds at each mass point. We evaluate the excluded parameter space for VLQs under singlet, doublet, and triplet representations. For top-like VLQs ($T$), the exclusion limits rule out masses up to 1.49 TeV in singlet scenarios, while single production constrains the mixing parameter $κ$ to values below 0.26 at $m_T \sim 1.5$ TeV and up to 0.42 for $m_T \sim 2$ TeV. For bottom-like VLQs ($B$), the strongest exclusion limits from pair production exclude masses up to 1.52 TeV in doublet configurations, with single production constraining $κ$ values between 0.2 and 0.7 depending on the mass. For exotic VLQs, such as $X$ and $Y$, pair production excludes masses up to 1.46 TeV and 1.7 TeV, respectively. The constraints on $κ$ from these analyses become increasingly restrictive at higher masses, reflecting the enhanced sensitivity of single production channels in this regime. For $X$, $κ$ is constrained below 0.16 for masses between 0.8 and 1.6 TeV and further tightens to $κ< 0.2$ as the mass approaches 1.8 TeV. Similarly, for $Y$, $κ$ values are constrained below 0.26 around $m_Y \sim 1.7$ TeV, with exclusions gradually relaxing at higher masses. These exclusion regions, derived from the most stringent LHC search results, offer a unified and up-to-date perspective on VLQ phenomenology. The results were computed using \texttt{VLQBounds}, a new Python-based tool specifically developed for this purpose.
title Vector-Like Quarks at the LHC: A Unified Perspective from ATLAS and CMS Exclusion Limits
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2412.01761