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Discovery prospects of a vectorlike top partner decaying to a singlet boson

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arxiv 2204.09005 v2 pith:ZFTGBDSA submitted 2022-04-19 hep-ph hep-ex

classification hep-phhep-ex
keywords abovechanneldecaydiscoverypartnerquarkbosondecaying
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abstract

The possibility of a vectorlike top partner decaying to a new colourless weak-singlet scalar or pseudoscalar has attracted some attention in the literature. We investigate the production of a weak-singlet charge-$2/3$ $T$ quark that can decay to a spinless boson ($\Phi$) and a top quark at the LHC. Earlier, in 2203.13753, we have shown that in a large part of the parameter space, the $T\to t\Phi$ and the loop-induced $\Phi \to gg$ decays become the dominant decay modes for these particles. Here, we investigate the discovery prospects of the $T$ quark in this region through the above decays. In particular, we focus on the $pp\to TT\to (t\Phi)(t\Phi)\to (t(gg))\,(t(gg))$ channel. Separating this signal from the huge Standard Model background is a challenging task, forcing us to employ a multivariate machine-learning technique. We find that the above channel can be a discovery channel of the top partner in the large part of the parameter space where the above decay chain dominates. Our analysis is largely model-independent, and hence our results would be useful in a broad class of new physics models.

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  1. Tagging fully hadronic exotic decays of the vectorlike $\mathbf{B}$ quark using a graph neural network

    hep-ph 2025-05 conditional novelty 6.0 of 10

    A GNN-based search could give the HL-LHC an exclusion reach near 2.4 TeV for vectorlike B quarks decaying fully hadronically through b plus a singlet scalar, with performance comparable to semileptonic searches.

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