Electroweak radiative corrections to production at the ILC
arXiv:1409.4900 · doi:10.1140/epjc/s10052-014-3166-y
Abstract
We provide and discuss the precision predictions for the production at the ILC including the full electroweak (EW) one-loop corrections and high order initial state radiation (ISR) contributions in the Standard Model. The dependence of the leading order (LO) and EW corrected cross sections on the colliding energy is investigated. We find that the EW correction suppresses the LO cross section significantly, and the ISR effect beyond is important near the threshold, but is negligible in the high energy region. We provide the LO and EW corrected distributions of the transverse momenta and rapidities of final -boson and photon as well as the -pair invariant mass. From the various kinematic distributions, we find that EW correction strongly depends on the final state phase space. We investigate the leptonic decays of the final W-boson pair by adopting the narrow width approximation (NWA), and find that the final produced photon and leptons can be well separated from each other.
23 pages, 11 figures
References in corpus (9)
- Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC
- NLO QCD corrections to tri-boson production
- QCD corrections to tri-boson production
- QCD corrections to hadronic WWZ production with leptonic decays
- QCD corrections to charged triple vector boson production with leptonic decay
- A search for WW gamma and WZ gamma production and constraints on anomalous quartic gauge couplings in pp collisions at sqrt(s) = 8 TeV
- Wγγproduction with leptonic decays at NLO QCD
- NLO QCD corrections to production with leptonic decays
- Complete one-loop electroweak corrections to production at the ILC
Cited by in corpus (4)
- Electroweak corrections to top quark pair production in association with a hard photon at hadron colliders
- NLO QCD + EW corrections to production with subsequent leptonic decays at LHC
- production at hadron colliders with NLO QCD+EW corrections and parton shower effects
- Bounds on anomalous quartic couplings in collisions at the FCC-he