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Precision study of the $η\toμ^+μ^-γ$ and $ω\toμ^+μ^-π^0$ electromagnetic transition form-factors and of the $ρ\toμ^+μ^-$ line shape in NA60

Published 29 Aug 2016 in hep-ex | (1608.07898v1)

Abstract: The NA60 experiment studied low-mass muon pair production in proton-nucleus (p-A) collisions using a 400~GeV proton beam at the CERN SPS. The low-mass dimuon spectrum is well described by the superposition of the two-body and Dalitz decays of the light neutral mesons $\eta$, $\rho$, $\omega$, $\eta'$ and $\phi$, and no evidence of in-medium effects is found. A new high-precision measurement of the electromagnetic transition form factors of the $\eta$ and $\omega$ was performed, profiting from a 10~times larger data sample than the peripheral In-In sample previously collected by NA60. Using the pole-parameterisation $|F(M)|2 = (1 -M2/\mathrm{\Lambda}2){-2}$ we find $\mathrm{\Lambda}\eta{-2} = 1.934\ \pm\ 0.067$~(stat.) $\pm\ 0.050$~(syst.)~(GeV/$c2$)${-2}$ and $\mathrm{\Lambda}\omega{-2} = 2.223\ \pm\ 0.026$~(stat.) $\pm\ 0.037$~(syst.)~(GeV/$c2$)${-2}$. An improved value of the branching ratio of the Dalitz decay $\omega \to \mu+\mu-\pi0$ is also obtained, with $BR(\omega \to \mu+\mu-\pi0) = [1.41~\pm~0.09~\mathrm{(stat.)}$ $\pm~0.15~\mathrm{(syst.)}] \times 10{-4}$. Further results refer to the $\rho$ line shape and a new limit on $\rho/\omega$ interference in hadron interactions.

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