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<references>
<reference>
  <t1>Branching fractions of $\eta$ and $\eta’(958)$ anomalous decays at LHCb</t1>
  <t2/>
  <sn/>
  <op/>
  <vo/>
  <ab>Branching fractions of $\eta$ and $\eta’(958)$ anomalous decays are measured using $pp$ collision data at a center-of-mass energy of $\sqrt{s}=13\,\mathrm{TeV}$ collected by the LHCb experiment and   corresponding to an integrated luminosity of $5.4\,\mathrm{fb^{-1}}$.    The measured values and upper limits at the 90% confidence level are   \begin{equation}       \mathcal{B}(\eta\to\mu^+\mu^-) = (5.30\pm0.14_{\text{(stat)}}\pm0.18_{\text{(syst)}}\pm0.26_{\phi})\times10^{-6} \nonumber,   \end{equation}   \begin{equation}       \mathcal{B}(\eta’(958)\to\mu^+\mu^-)&lt;1.94\times10^{-7} \nonumber,   \end{equation}   \begin{equation}      \mathcal{B}(\eta\to\pi^+\pi^-\mu^+\mu^-)&lt;6\times10^{-7} \nonumber,   \end{equation}   \begin{equation}      \mathcal{B}(\eta’(958)\to\pi^+\pi^-\mu^+\mu^-) = (2.80\pm0.14_{\text{(stat)}}\pm0.13_{\text{(syst)}}\pm0.14_{\phi})\times10^{-5} \nonumber,   \end{equation}   where the first uncertainty is statistical, the second is systematic,   and the third is the uncertainty associated with the branching fraction of the $\phi\to\mu^+ \mu^-$ decay which is used for normalization.   This marks the first-ever experimental search for $\eta’(958)\to\mu^+\mu^+$,    and the most precise value of $\mathcal{B}(\eta\to\mu^+\mu^-)$ to date.</ab>
  <la>eng</la>
  <k1>LHCb;
                QCD,;
                flavour physics;
                branching fraction;
                </k1>
  <pb/>
  <pp/>
  <yr>2025</yr>
  <ed/>
  <ul>http://cds.cern.ch/record/2942585/files/LHCb-CONF-2025-002.pdf;
	http://cds.cern.ch/record/2942585/files/LHCb-CONF-2025-002_Figures.zip;
	</ul>
  <no>Imported from Invenio.</no>
</reference>

</references>