The KLOE-2 Collaboration

A. Anastasi, D. Babusci, Marcin Berłowski,C. Bloise, Fabio Bossi,Paolo Branchini,Antonio Budano, L. Caldeira Balkest̊ahl, Bintao Cao, Filippo Ceradini, Paolo Ciambrone, Francesca Curciarello, Eryk Czerwiński, Giulio D'Agostini, Eric Dané, Veronica De Leo, Erika de Lucia, Antonio S.A.L. de Santis, Patrizia de Simone, Andrea Di Cicco,Antonio Di Domenico, Davide Domenici, Antonio D'Uffizi, Andrea Fantini, Giulia Fantini, Paolo Fermani, S. Fiore, Aleksander Gajos, Paolo Gauzzi, Simona Giovannella,Enrico Graziani, Vladimir L. Ivanov,Tord Johansson, D. Kisielewska-Kami'nska, Xian-Wei Kang, E. A. Kozyrev, Wojciech Krzemien, A. Kupść, S. Loffredo, P. A. Lukin,Giuseppe Mandaglio, M. Martini, Roberto Messi, S. Miscetti, Gianfranco Morello, Dario Moricciani, Paweł Moskal, Antonio Passeri, Vincenzo Patera, Elena Pérez del Río, Nandita Raha, Paolo Santangelo, Marco Schioppa, A. Selce,Michał Silarski,Florin Sirghi, E. P. Solodov,Luca Tortora, G. Venanzoni, Wojciech Wislicki, Alexander Keshavarzi, S. E. Müller, Thomas Teubner

semanticscholar(2018)

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摘要
The three precision measurements of the cross section σ ( e+e− → π+π−γ(γ) ) using initial state radiation by the KLOE collaboration provide an important input for the prediction of the hadronic contribution to the anomalous magnetic moment of the muon. These measurements are correlated for both statistical and systematic uncertainties and, therefore, the simultaneous use of these measurements requires covariance matrices that fully describe the correlations. We present the construction of these covariance matrices and use them to determine a combined KLOE measurement for σ ( e+e− → π+π−γ(γ) ) . We find, from this combination, a two-pion contribution to the muon magnetic anomaly in the energy range 0.10 < s < 0.95 GeV2 of aπ +π− μ = (489.8± 1.7stat ± 4.8sys)× 10−10.
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