Approaching robust EFT limits for CP-violation in the Higgs sector
arXiv:1901.05982 · doi:10.1103/PhysRevD.99.095007
Abstract
Constraining CP-violating interactions in effective field theory (EFT) of dimension six faces two challenges. Firstly, degeneracies in the multi-dimensional space of Wilson coefficients have to be lifted. Secondly, quadratic contributions of CP-odd dimension six operators are difficult to disentangle from squared contributions of CP-even dimension six operators and from linear contributions of dimension eight operators. Both of these problems are present when new sources of CP-violation are present in the interactions between the Higgs boson and heavy strongly-interacting fermions. We show that degeneracies in the Wilson coefficients can be removed by combining measurements of Higgs-plus-two-jet production via gluon fusion with measurements of top-pair associated Higgs production. In addition, we demonstrate that the sensitivity of the analysis can be improved by exploiting the top-quark threshold in the gluon fusion process. Finally, we substantiate a perturbative argument about the validity of EFT by comparing the quadratic and linear contributions from CP-odd dimension six operators and use this to show explicitly that high statistics measurements at future colliders enable the extraction of perturbatively robust constraints on the associated Wilson coefficients.
13 pages, 10 figures, 2 tables, v2: published version
References in corpus (13)
- The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations
- Herwig++ Physics and Manual
- A standard format for Les Houches Event Files
- VBFNLO: A parton level Monte Carlo for processes with electroweak bosons
- Anomalous Higgs boson couplings in vector boson fusion at the CERN LHC
- Next-to-Leading order Higgs + 2 jet production via gluon fusion
- Mass Effects in the Higgs-Gluon Coupling: Boosted vs Off-Shell Production
- Constraining CP-violating Higgs Sectors at the LHC using gluon fusion
- Boosted Higgs Shapes
- Resolving the Higgs-Gluon Coupling with Jets
- Monte Carlo studies of the jet activity in Higgs + 2 jet events
- Exploring the Anomalous Higgs-top Couplings
- Higgs characterisation in the presence of theoretical uncertainties and invisible decays