Study of 3He(n,p)3H reaction at cosmological energies with trojan horse method

In the network of reactions present in the Big Bang nucleosynthesis, the 3He(n, p)3H has an important role which impacts the final 7Li abundance. The Trojan Horse Method (THM) has been applied to the 3He(d, pt)H reaction in order to extract the astrophysical S(E)-factor of the 3He(n, p)3H in the Gam...

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Veröffentlicht in:EPJ Web of conferences 2020-01, Vol.227, p.02013
Hauptverfasser: Spampinato, C, Pizzone, R G, Spartà, R, Couder, M, Tan, W, Burian, V, Chae, KY, G D’Agata, Guardo, G L, Indelicato, I, La Cognata, M, Lamia, L, Lattuada, D, Mrazek, J, Oliva, A, Palmerini, S, Prajapati, P M, Rapisarda, G G, Romano, S, Sergi, M L, Spitaleri, C, Tumino, A, Wiescher, M, Anguilar, S, Bardyan, D, Blankstein, D, Boccioli, L, Callahan, L, Clark, A, Frentz, B, Hall, M, Gula, A, Henderson, S, Kelmar, R, Liu, Q, Long, J, Majumdar, A, McGuinness, S, Nelson, A, P O’Malley, Seyymour, C, Skulski, M, Wilkinson, J
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Sprache:eng
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Zusammenfassung:In the network of reactions present in the Big Bang nucleosynthesis, the 3He(n, p)3H has an important role which impacts the final 7Li abundance. The Trojan Horse Method (THM) has been applied to the 3He(d, pt)H reaction in order to extract the astrophysical S(E)-factor of the 3He(n, p)3H in the Gamow energy range. The experiment will be described in the present work together with the first preliminary results.
ISSN:2101-6275
2100-014X
DOI:10.1051/epjconf/202022702013