Constraining couplings of the top quarks to the Z boson in ttbar+Z production at the LHC
arXiv:1404.1005 · doi:10.1007/JHEP07(2014)091
Abstract
We study top quark pair production in association with a Z boson at the Large Hadron Collider (LHC) and investigate the prospects of measuring the couplings of top quarks to the Z boson. To date these couplings have not been constrained in direct measurements. Such a determination will be possible for the first time at the LHC. Our calculation improves previous coupling studies through the inclusion of next-to-leading order (NLO) QCD corrections in production and decays of all unstable particles. We treat top quarks in the narrow-width approximation and retain all NLO spin correlations. To determine the sensitivity of a coupling measurement we perform a binned log-likelihood ratio test based on normalization and shape information of the angle between the leptons from the Z boson decay. The obtained limits account for statistical uncertainties as well as leading theoretical systematics from residual scale dependence and parton distribution functions. We use current CMS data to place the first direct constraints on the ttbZ couplings. We also consider the upcoming high-energy LHC run and find that with 300 inverse fb of data at an energy of 13 TeV the vector and axial ttbZ couplings can be constrained at the 95% confidence level to C_V=0.24^{+0.39}_{-0.85} and C_A=-0.60^{+0.14}_{-0.18}, where the central values are the Standard Model predictions. This is a reduction of uncertainties by 25% and 42%, respectively, compared to an analysis based on leading-order predictions. We also translate these results into limits on dimension-six operators contributing to the ttbZ interactions beyond the Standard Model.
JHEP version + error in Eq. 2.6 corrected and corresponding higher order operator limits modified
References in corpus (15)
- Parton distributions for the LHC
- Reducing full one-loop amplitudes to scalar integrals at the integrand level
- MCFM for the Tevatron and the LHC
- Full one-loop amplitudes from tree amplitudes
- Assault on the NLO Wishlist: pp -> tt bb
- A Numerical Unitarity Formalism for Evaluating One-Loop Amplitudes
- Complete off-shell effects in top quark pair hadroproduction with leptonic decay at next-to-leading order
- t tbar W and t tbar Z Hadroproduction at NLO accuracy in QCD with Parton Shower and Hadronization effects
- Electroweak Precision Observables, New Physics and the Nature of a 126 GeV Higgs Boson
- Next-to-leading order QCD corrections to t-tbar-Z production at the LHC
- Light top partners and precision physics
- NLO QCD corrections to off-shell top-antitop production with leptonic decays at hadron colliders
- NLO QCD corrections to W+ W- b anti-b production with leptonic decays in the light of top quark mass and asymmetry measurements
- Prospects for top-prime quark discovery at the Tevatron
- A Study of b bbar Production in e+e- Collisions at sqrt(s) = 130-207 GeV
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