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Seraching for the ${5}H$ Resonance in the t+n+n System

The unbound hydrogen isotopes 4,5H have been studied in the one-proton knockout channel of 6He (240 MeV/u) impinging on a carbon target. The triton fragments originating from this channel were detected in coincidence with neutrons. Relative energy spectra as well as energy and angular correlations h...

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Detalles Bibliográficos
Autores principales: Meister, M, Chulkov, L.V., Simon, H., Aumann, T., Borge, M.J.G., Elze, Th.W., Emling, H., Geissel, H., Hellstrom, M., Jonson, B., Kratz, J.V., Kulessa, R., Leifels, Y., Markenroth, K., Munzenberg, G., Nickel, F., Nilsson, T., Nyman, G., Pribora, V., Richter, A., Riisager, K., Scheidenberger, C., Schrieder, G., Tengblad, O.
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0375-9474(03)01312-5
http://cds.cern.ch/record/858051
Descripción
Sumario:The unbound hydrogen isotopes 4,5H have been studied in the one-proton knockout channel of 6He (240 MeV/u) impinging on a carbon target. The triton fragments originating from this channel were detected in coincidence with neutrons. Relative energy spectra as well as energy and angular correlations have been studied for the t+n and t+n+n systems. The analysis of the energy and angular correlations by the method of hyperspherical harmonic expansion allows to determine the relative weights of the most relevant partial waves in the three-body t+n+n final state. It is shown that the neutrons to a large extent occupy the p-shell and that the Iπ=1/2+ state is strongly populated as expected for the 5H ground state. No evidence for a narrow resonance in the t+n+n system is obtained, instead a broad structure peaked at 3 MeV above the threshold with about 6 MeV as a full width at half maximum is observed. The two-body t+n system reveals a resonance compatible with earlier results for 4H.