QED challenges at FCC-ee precision measurements
arXiv:1903.09895 · doi:10.1140/epjc/s10052-019-7255-9
Abstract
The expected experimental precision of the rates and asymmetries in the Future Circular Collider with electron positron beams (FCC-ee) in the centre of the mass energy range 88-365GeV considered for construction in CERN, will be better by a factor 5-200. This will be thanks to very high luminosity, factor up to higher than in the past LEP experiments. This poses the extraordinary challenge of improving the precision of the Standard Model predictions by a comparable factor. In particular the perturbative calculations of the trivial QED effects, which have to be removed from the experimental data, are considered to be a major challenge for almost all quantities to be measured at FCC-ee. The task of this paper is to summarize on the "state of the art" in this class of the calculations left from the LEP era and to examine what is to be done to match the precision of the FCC-ee experiments -- what kind of technical advancements are necessary. The above analysis will be done for most important observables of the FCC-ee like the total cross sections near and threshold, charge asymmetries, the invisible width of boson, the spin asymmetry from lepton decay and the luminosity measurement.
Corrected author's name in ref. [106]
References in corpus (7)
- Matching perturbative and Parton Shower corrections to Bhabha process at flavour factories
- Two-loop QED corrections to Bhabha scattering
- Complete electroweak two-loop corrections to Z boson production and decay
- Four-fermion production near the W pair production threshold
- The Path to Theoretical Luminosity Precision for the FCC-ee
- Dominant NNLO corrections to four-fermion production near the W-pair production threshold
- The Initial State QED Corrections to Annihilation to a Neutral Vector Boson Revisited
Cited by in corpus (6)
- Event Generators for High-Energy Physics Experiments
- Subleading Logarithmic QED Initial State Corrections to to
- Multi-photon Monte Carlo event generator KKMCee for lepton and quark pair production in lepton colliders
- QED Exponentiation for quasi-stable charged particles: the process
- Asymmetries in Processes of Electron-Positron Annihilation
- YFS Resummation for Future Lepton-Lepton Colliders in SHERPA