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Vector-like quarks coupling discrimination at the LHC and future hadron colliders

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arxiv 1710.02325 v2 pith:CWOCKBRM submitted 2017-10-06 hep-ph hep-ex

classification hep-phhep-ex
keywords quarkscollidersfuturehadroncouplingdiscovereddiscoverydiscrimination
verification ladder T0 review T1 audit T2 compute T3 formal
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The existence of new coloured states with spin one-half, i.e. extra-quarks, is a striking prediction of various classes of new physics models. Should one of these states be discovered during the 13 TeV runs of the LHC or at future high energy hadron colliders, understanding its properties will be crucial in order to shed light on the underlying model structure. Depending on the extra-quarks quantum number under SU(2)L, their coupling to Standard Model quarks and bosons have either a dominant left- or right-handed chiral component. By exploiting the polarisation properties of the top quarks arising from the decay of pair-produced extra quarks, we show how it is possible to discriminate among the two hypothesis in the whole discovery range currently accessible at the LHC, thus effectively narrowing down the possible interpretations of a discovered state in terms of new physics scenarios. Moreover, we estimate the discovery and discrimination power of future prototype hadron colliders with centre of mass energies of 33 and 100 TeV.

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  1. Exotic decays of top partners: mind the search gap

    hep-ph 2019-08 conditional novelty 6.0 of 10

    A top-partner search gap exists: for T -> t a with a -> gg, current LHC bounds drop from about 1.3 TeV to roughly 400-550 GeV.

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