Missing-mass spectroscopy with the Li()X reaction to search for H
R. Honda🇯🇵 · M. Agnello🇮🇹 · J. K. Ahn🇰🇷 · S. Ajimura🇯🇵 · Y. Akazawa🇯🇵 · N. Amano🇯🇵 · K. Aoki🇯🇵 · H. C. Bhang🇰🇷 · N. Chiga🇯🇵 · M. Endo🇯🇵 · P. Evtoukhovitch🇷🇺 · A. Feliciello🇮🇹 and 54 other authors
We searched for the bound state of the neutron-rich -hypernucleus H, using the Li()X double charge-exchange reaction at a beam momentum of 1.2 GeV/c at J-PARC. A total of was driven onto a Li target of 3.5-g/ thickness. No event was observed below the bound threshold, i.e., the mass of H + 2n, in the missing-mass spectrum of the Li()X reaction in the < < angular range. Furthermore, no event was found up to 2.8 MeV/ above the bound threshold. We obtained the the double-differential cross section spectra of the Li()X reaction in the angular range of < < . An upper limit of 0.56 nb/sr (90% C.L.) was obtained for the production cross section of the H hypernucleus bound state. In addition, not only the bound state region, but also the continuum region and part of the quasi-free production region of the Li()X reaction, were obtained with high statistics. The present missing-mass spectrum will facilitate the investigation of the -nucleus optical potential for -He through spectrum shape analysis.