β decay of He 6 into the α + d continuum

Here, the rare β-decay channel of 6He into the α+d continuum was investigated at the REX-ISOLDE facility. Bunches of postaccelerated 6He ions were implanted into the optical time projection chamber (OTPC), where the decays with emission of charged particles were recorded. This novel technique allowe...

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Veröffentlicht in:Physical review. C, Nuclear physics Nuclear physics, 2015-07, Vol.92 (1), Article 014316
Hauptverfasser: Pfützner, M., Dominik, W., Janas, Z., Mazzocchi, C., Pomorski, M., Bezbakh, A. A., Borge, M. J. G., Chrapkiewicz, K., Chudoba, V., Frederickx, R., Kamiński, G., Kowalska, M., Krupko, S., Kuich, M., Kurcewicz, J., Lis, A. A., Lund, M. V., Miernik, K., Perkowski, J., Raabe, R., Randisi, G., Riisager, K., Sambi, S., Tengblad, O., Wenander, F.
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Sprache:eng
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Zusammenfassung:Here, the rare β-decay channel of 6He into the α+d continuum was investigated at the REX-ISOLDE facility. Bunches of postaccelerated 6He ions were implanted into the optical time projection chamber (OTPC), where the decays with emission of charged particles were recorded. This novel technique allowed us to extend the low-energy end of the spectrum down to 150 keV in α+d center of mass, corresponding to a deuteron energy of 100 keV. The branching ratio for this process amounts to [2.78±0.07(stat)±0.17(sys)]×10–6. The shape of the spectrum is found to be in a good agreement with a three-body model, while the total intensity is about 20% larger than the predicted one.
ISSN:0556-2813
1089-490X
DOI:10.1103/PhysRevC.92.014316