A study of the proton spectra following the capture of $K^-$ in $^6$Li and $^{12}$C with FINUDA

Momenta spectra of protons emitted following the capture of $K^-$ in $^6$Li and $^{12}$C have been measured with 1% resolution. The $^{12}$C spectrum is smooth whereas for $^6$Li a well defined peak appears at about 500 MeV/$c$. The first observation of a structure in this region was identified as a...

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Hauptverfasser: Agnello, M, Beer, G, Benussi, L, Bertani, M, Bhang, H. C, Bianco, S, Bonomi, G, Botta, E, Bregant, M, Bressani, T, Bufalino, S, Busso, L, Calvo, D, Camerini, P, Cerello, P, Dalena, B, De Mori, F, D'Erasmo, G, Di Santo, D, Elia, D, Fabbri, F. L, Faso, D, Feliciello, A, Filippi, A, Filippini, V, Fini, R. A, Fiore, E. M, Fujioka, H, Gianotti, P, Grion, N, Hartmann, O, Krasnoperov, A, Lenti, V, Lucherini, V, Manzari, V, Marcello, S, Maruta, T, Mirfakhrai, N, Morra, O, Nagae, T, Olin, A, Outa, H, Pace, E, Pallotta, M, Palomba, M, Pantaleo, A, Panzarasa, A, Paticchio, V, Piano, S, Pompili, F, Rui, R, Simonetti, G, So, H, Tereshchenko, V, Tomassini, S, Toyoda, A, Wheadon, R, Zenoni, A
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Zusammenfassung:Momenta spectra of protons emitted following the capture of $K^-$ in $^6$Li and $^{12}$C have been measured with 1% resolution. The $^{12}$C spectrum is smooth whereas for $^6$Li a well defined peak appears at about 500 MeV/$c$. The first observation of a structure in this region was identified as a strange tribaryon or, possibly, a $\bar K$-nuclear state. The peak is correlated with a $\pi^-$ coming from $\Sigma^-$ decay in flight, selected by setting momenta larger than 275 MeV/$c$. The $\Sigma^-$ could be produced, together with a 500 MeV/$c$ proton, by the capture of a $K^-$ in a deuteron-cluster substructure of the $^6$Li nucleus. The capture rate for such a reaction is $(1.62\pm 0.23_{stat} ^{+0.71}_{-0.44}(sys))%/K^-_{stop}$, in agreement with the existing observations on $^4$He targets and with the hypothesis that the $^6$Li nucleus can be interpreted as a $(d+\alpha)$ cluster.
DOI:10.48550/arxiv.nucl-ex/0606021