Pith. sign in

Diquark contributions to Top quark charge asymmetry at the Tevatron and LHC

1 Pith paper cite this work. Polarity classification is still indexing.

1 Pith paper citing it
abstract

We study contributions of a scalar diquark particle in a color representation of anti-triplet and sextet to the top quark pair production at the Tevatron and the Large hadron collider (LHC). The model can give Forward-Backward (FB) asymmetry at the Tevatron while can avoid the same sign top quark production at the LHC by assuming the top-number conserving diquark couplings. We study compatibility between the large positive FB asymmetry observed at the Tevatron and non-observation of the charge asymmetry at the LHC, by including contributions from the single and pair production of diquarks. We find that the whole parameter space of the models can soon be explored at the LHC by measuring the total t-tbar production cross section and the inclusive charge asymmetry with smaller uncertainties. In addition, we compare the statistical significance of the charge asymmetry measured at the LHC with that of the optimal observable of the subprocess FB asymmetry, and find that they are comparable even when we ignore the uncertainty in the parton distribution functions.

citation-role summary

background 1

citation-polarity summary

fields

hep-ph 1

years

2024 1

verdicts

CONDITIONAL 1

roles

background 1

polarities

unclear 1

representative citing papers

Unveiling E$_6$SSM Scalar Diquarks at the HL-LHC

hep-ph · 2024-12-27 · conditional · novelty 5.0

A detector-level Monte Carlo study finds that pair-produced E6SSM scalar diquarks decaying to top-bottom pairs could be observed with >3 sigma statistical significance at the HL-LHC for masses up to 900 GeV.

citing papers explorer

Showing 1 of 1 citing paper.

  • Unveiling E$_6$SSM Scalar Diquarks at the HL-LHC hep-ph · 2024-12-27 · conditional · none · ref 20 · internal anchor

    A detector-level Monte Carlo study finds that pair-produced E6SSM scalar diquarks decaying to top-bottom pairs could be observed with >3 sigma statistical significance at the HL-LHC for masses up to 900 GeV.