First Measurement of a Long-Lived π^{+}π^{-} Atom Lifetime

The adapted DIRAC experiment at the CERN PS accelerator observed for the first time long-lived hydrogenlike π^{+}π^{-} atoms, produced by protons hitting a beryllium target. A part of these atoms crossed the gap of 96 mm between the target and a 2.1  μm thick platinum foil, in which most of them dis...

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Veröffentlicht in:Physical review letters 2019-03, Vol.122 (8), p.082003-082003, Article 082003
Hauptverfasser: Adeva, B, Afanasyev, L, Anania, A, Aogaki, S, Benelli, A, Brekhovskikh, V, Cechak, T, Chiba, M, Chliapnikov, P V, Doskarova, P, Drijard, D, Dudarev, A, Dumitriu, D, Fluerasu, D, Gorin, A, Gorchakov, O, Gritsay, K, Guaraldo, C, Gugiu, M, Hansroul, M, Hons, Z, Horikawa, S, Iwashita, Y, Karpukhin, V, Kluson, J, Kobayashi, M, Kruglov, V, Kruglova, L, Kulikov, A, Kulish, E, Lamberto, A, Lanaro, A, Lednicky, R, Mariñas, C, Martincik, J, Nemenov, L, Nikitin, M, Okada, K, Olchevskii, V, Ovsiannikov, V, Pentia, M, Penzo, A, Plo, M, Prusa, P, Rappazzo, G F, Romero Vidal, A, Ryazantsev, A, Rykalin, V, Saborido, J, Schacher, J, Sidorov, A, Smolik, J, Takeutchi, F, Trojek, T, Trusov, S, Urban, T, Vrba, T, Yazkov, V, Yoshimura, Y, Zrelov, P
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Sprache:eng
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Zusammenfassung:The adapted DIRAC experiment at the CERN PS accelerator observed for the first time long-lived hydrogenlike π^{+}π^{-} atoms, produced by protons hitting a beryllium target. A part of these atoms crossed the gap of 96 mm between the target and a 2.1  μm thick platinum foil, in which most of them dissociated. Analyzing the observed number of atomic pairs, n_{A}^{L}=436_{-61}^{+157}|_{tot}, the lifetime of the 2p state is found to be τ_{2p}=(0.45_{-0.30}^{+1.08}|_{tot})×10^{-11}  s, not contradicting the corresponding QED 2p state lifetime τ_{2p}^{QED}=1.17×10^{-11}  s. This lifetime value is three orders of magnitude larger than our previously measured value of the π^{+}π^{-} atom ground state lifetime τ=(3.15_{-0.26}^{+0.28}|_{tot})×10^{-15}  s. Further studies of long-lived π^{+}π^{-} atoms will allow us to measure energy differences between p and s atomic states and so to discriminate between the isoscalar and isotensor ππ scattering lengths with the aim to check QCD predictions.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.122.082003