Heavy-ion particle identification for the transfer reaction channels for the system 18O + 116Sn under the NUMEN Project

The current work is a part of the NUMEN project, which aims to deduce the nuclear matrix elements (NME) of neutrinoless double beta decay by measuring the cross sections in heavy-ion induced Double Charge Exchange (DCE) reactions. The particle identification for the competing transfer reaction chann...

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Veröffentlicht in:Journal of physics. Conference series 2018-07, Vol.1056 (1)
Hauptverfasser: Deshmukh, N, Cappuzzello, F, Agodi, C, Carbone, D, Cavallaro, M, Acosta, L, Bonanno, D, Bongiovanni, D, Boztosun, I, Calabrese, S, Calvo, D, Chávez Lomelí, E R, Delaunay, F, Finocchiaro, P, Fisichella, M, Foti, A, Gallo, G, Hacisalihoglu, A, Iazzi, F, Introzzi, R, Lanzalone, G, Linares, R, Longhitano, F, Lo Presti, D, Medina, N, Muoio, A, Oliveira, J R B, Pakou, A, Pandola, L, Pinna, F, Reito, S, Russo, G, Santagati, G, Sgouros, O, Solakcı, S O, Souliotis, G, Soukeras, V, Spatafora, A, Torresi, D, Tudisco, S, Yildirin, A, Zagatto, V A B
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Sprache:eng
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Zusammenfassung:The current work is a part of the NUMEN project, which aims to deduce the nuclear matrix elements (NME) of neutrinoless double beta decay by measuring the cross sections in heavy-ion induced Double Charge Exchange (DCE) reactions. The particle identification for the competing transfer reaction channels has been studied for the 18O + 116Sn system at 270 MeV.
ISSN:1742-6588
1742-6596
DOI:10.1088/1742-6596/1056/1/012015