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- W1518789734 abstract "Among various models proposed so far, attempting to explain the anomalous ${l}^{+}$${l}^{mathrm{ensuremath{-}}}$ensuremath{gamma} events, four representative types of models, (I) ${Z}^{0}$ensuremath{rightarrow}S or P+ensuremath{gamma}ensuremath{rightarrow}${l}^{+}$${l}^{mathrm{ensuremath{-}}}$ensuremath{gamma}, (II) ${Z}^{0}$ensuremath{rightarrow}${Z}_{mathrm{virt}}^{0}$+ensuremath{gamma}ensuremath{rightarrow}${l}^{+}$${l}^{mathrm{ensuremath{-}}}$ensuremath{gamma} (anomalous-magnetic-moment interaction), (III) ${Z}^{0}$ensuremath{rightarrow}lifmmodebarelsetextasciimacronfi{} ${l}^{mathrm{*}}$+l lifmmodebarelsetextasciimacronfi{} $^{mathrm{*}}l^{+}$${l}^{mathrm{ensuremath{-}}}$ensuremath{gamma} (excited lepton), and (IV) S or Pensuremath{rightarrow}${Z}_{mathrm{virt}}^{0}$+ensuremath{gamma}, are confronted with a test of the distribution in the angle between photon and one of the leptons. All these four models seem to fail to provide the explanation to the angular characteristics of the data. However, more statistics are needed to arrive at firm conclusions with regards to the mechanism of the events, including as well the bremsstrahlung contribution." @default.
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- W1518789734 title "Angular distributions in anomalousl+l−γ events" @default.
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- W1518789734 doi "https://doi.org/10.1103/physrevd.31.539" @default.
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