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Astrophysical S-factor of 14N(p,)15O

Authors :
Formicola, A.
Imbriana, G.
Costantini, H.
Angulo Perez, Carmen
Bemmerer, D.
Bonetti, R.
Broggini, C.
Corvisiero, P.
Cruz, J.
Descouvemont, Pierre
Fulop, Zsolt
Gervino, G.
Guglielmetti, A.
Gustavino, C.
Gyurky, Gy
Jesus, A. P.
Junker, Matthias
Lemut, A.
Menegazzo, R.
Prati, P.
Roca, V.
Rolfs, Claus
Romano, M.
Alvarez, C.
Schumann, F.
Somorjai, Endre
Straniero, O.
Strieder, Frank
Terrasi, F.
Trautvetter, H. P.
Vomiero, A.
Zavatarelli, Sandra
Formicola, A.
Imbriana, G.
Costantini, H.
Angulo Perez, Carmen
Bemmerer, D.
Bonetti, R.
Broggini, C.
Corvisiero, P.
Cruz, J.
Descouvemont, Pierre
Fulop, Zsolt
Gervino, G.
Guglielmetti, A.
Gustavino, C.
Gyurky, Gy
Jesus, A. P.
Junker, Matthias
Lemut, A.
Menegazzo, R.
Prati, P.
Roca, V.
Rolfs, Claus
Romano, M.
Alvarez, C.
Schumann, F.
Somorjai, Endre
Straniero, O.
Strieder, Frank
Terrasi, F.
Trautvetter, H. P.
Vomiero, A.
Zavatarelli, Sandra
Source :
Physics Letters B, 591 (1-2
Publication Year :
2004

Abstract

We report on a new measurement of the 14N(p,γ) 15O capture cross section at Ep=140 to 400 keV using the 400 kV LUNA accelerator facility at the Laboratori Nazionali del Gran Sasso (LNGS). The uncertainties have been reduced with respect to previous measurements and their analysis. We have analyzed the data using the R-matrix method and we find that the ground state transition accounts for about 15% of the total S-factor. The main contribution to the S-factor is given by the transition to the 6.79 MeV state. We find a total S(0)=1.7±0.2 keVb, in agreement with recent extrapolations. The result has important consequences for the solar neutrino spectrum as well as for the age of globular clusters. © 2004 Elsevier B.V. All rights reserved.<br />info:eu-repo/semantics/published

Details

Database :
OAIster
Journal :
Physics Letters B, 591 (1-2
Notes :
1 full-text file(s): application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn764581016
Document Type :
Electronic Resource