6533b82afe1ef96bd128ca4d
RESEARCH PRODUCT
Flavor-singlet meson decay constants from Nf=2+1+1 twisted mass lattice QCD
Konstantin OttnadKonstantin OttnadCarsten Urbachsubject
PhysicsParticle physicsChiral perturbation theoryMeson010308 nuclear & particles physicsMomentum transferLattice QCDFermion01 natural sciencesPionLattice constantLattice (order)0103 physical sciencesHigh Energy Physics::ExperimentNuclear Experiment010306 general physicsdescription
We present an improved analysis of our lattice data for the $\ensuremath{\eta}--{\ensuremath{\eta}}^{\ensuremath{'}}$ system, including a correction of the relevant correlation functions for residual topological finite size effects and employing consistent chiral and continuum fits. From this analysis we update our physical results for the masses ${M}_{\ensuremath{\eta}}=557(11{)}_{\text{stat}}(03{)}_{\ensuremath{\chi}\mathrm{PT}}\text{ }\text{ }\mathrm{MeV}$ and ${M}_{\ensuremath{\eta}}^{\ensuremath{'}}=911(64{)}_{\text{stat}}(03{)}_{\ensuremath{\chi}\mathrm{PT}}\text{ }\text{ }\mathrm{MeV}$, as well as the mixing angle in the quark flavor basis $\ensuremath{\phi}=38.8(2.2{)}_{\text{stat}}(2.4{)}_{\ensuremath{\chi}\mathrm{PT}}^{\ensuremath{\circ}}$ in excellent agreement with other results from phenomenology. Similarly, we include an analysis for the decay constant parameters, leading to ${f}_{l}=125(5{)}_{\text{stat}}(6{)}_{\ensuremath{\chi}\mathrm{PT}}\text{ }\text{ }\mathrm{MeV}$ and ${f}_{s}=178(4{)}_{\text{stat}}(1{)}_{\ensuremath{\chi}\mathrm{PT}}\text{ }\text{ }\mathrm{MeV}$. The second error reflects the uncertainty related to the chiral extrapolation. The data used for this study has been generated on gauge ensembles provided by the European Twisted Mass Collaboration with ${N}_{f}=2+1+1$ dynamical flavors of Wilson twisted mass fermions. These ensembles cover a range of pion masses from 220 MeV to 500 MeV and three values of the lattice spacing. Combining our data with a prediction from chiral perturbation theory, we give an estimate for the physical $\ensuremath{\eta}$, ${\ensuremath{\eta}}^{\ensuremath{'}}\ensuremath{\rightarrow}\ensuremath{\gamma}\ensuremath{\gamma}$ decay widths and the singly-virtual $\ensuremath{\eta}$, ${\ensuremath{\eta}}^{\ensuremath{'}}\ensuremath{\rightarrow}\ensuremath{\gamma}{\ensuremath{\gamma}}^{*}$ transition form factors in the limit of large momentum transfer.
year | journal | country | edition | language |
---|---|---|---|---|
2018-03-19 | Physical Review D |