First observation of long-lived $\pi^+ \pi^-$ atoms

B Adeva, L Tauscher,P Prusa,M Gugiu,M Hansroul,Y Iwashita, D Dumitriu, A M Gorin, L L Nemenov, A Kuptsov, J Smolik,A I Kulikov,M Pentia,A Sidorov,L G Afanasyev,P Zrelov,Z Hons,R Lednicky,F Takeutchi,Shinichi Horikawa, G F Rappazzo,J Schacher, S Trusov, J Saborido, Karpukhin, L Kruglova,A Benelli,P Chliapnikov,A Lamberto, O E Gorchakov, M Nikitin, D Fluerasu, Olchevskii, Kruglov, A V Ryazantsev, Brekhovskikh, A Anania,C Marinas, P Doskarova,J Martincik, M Zhabitsky,Makoto Chiba,T Cechak,J Kluson, K Gritsay, A Penzo, Yazkov,A Romero Vidal, C Guaraldo, E Kulish, T Vrba,S Aogaki,Alexey Dudarev,Y Yoshimura, Daniel Drijard, M Plo, Ovsiannikov,Michio Kobayashi, Rykalin, A Lanaro, T Trojek, M Duma,T Urban, Kyoji Okada

PHYSICS LETTERS B(2015)

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摘要
After observing and investigating the double-exotic (adouble-exotic atom is a bound system, in which both oppositely charged components are unstable particles like mu, pi, K,...) pi(+)pi(-) atom with the ground state lifetime tau of about 3 x10(-15)s, the upgraded DIRAC experiment at the CERN PS accelerator observes for the first time long-lived states of the same atom with lifetimes of about 10(-11)s and more. The number of characteristic pion pairs resulting from the breakup (ionisation) of long-lived pi(+)pi(-) atoms amounts to 436 +/- 61, corresponding to a signal-to-error ratio of better than 7 standard deviations. This observation opens a new possibility to measure energy differences between p and s atomic states and so to determine pi pi scattering lengths. (C) 2015 CERN for the benefit of the DIRAC Collaboration. Published by Elsevier B.V.
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