Pregled bibliografske jedinice broj: 1049141
The 19F(p, α0) reaction at low bombarding energy
The 19F(p, α0) reaction at low bombarding energy // Proceedings of the International Conference “Nuclei-2013: Fundamental Problems and Applications of Nuclei Physics” (LXIII International Meeting on Nuclear Spectroscopy and the Structure of Atomic Nuclei), Bulletin of the Russian Academy of Sciences: Physic 78, 11
Moskva, Ruska Federacija: Springer, 2014. str. 1093-1096 doi:10.3103/s1062873814110161 (poster, međunarodna recenzija, sažetak, znanstveni)
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Naslov
The 19F(p, α0) reaction at low bombarding energy
Autori
Lombardo, I. ; Dell’Aquila, Daniele ; Campajola, L. ; Rosato, E. ; Spadaccini, G. ; Vigilante, M.
Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, znanstveni
Izvornik
Proceedings of the International Conference “Nuclei-2013: Fundamental Problems and Applications of Nuclei Physics” (LXIII International Meeting on Nuclear Spectroscopy and the Structure of Atomic Nuclei), Bulletin of the Russian Academy of Sciences: Physic 78, 11
/ - : Springer, 2014, 1093-1096
Skup
Nuclei-2013: Fundamental Problems and Applications of Nuclei Physics” = LXIII International Meeting on Nuclear Spectroscopy and the Structure of Atomic Nuclei
Mjesto i datum
Moskva, Ruska Federacija, 11-16.07.2013
Vrsta sudjelovanja
Poster
Vrsta recenzije
Međunarodna recenzija
Ključne riječi
Angular distribution ; Chemical elements ; Semiconductor detectors, Astrophysical S ; Bombarding energies ; Excitation function ; Legendre ; Literature data ; Solid state detectors ; Tandem accelerators, Excited states
Sažetak
In a recent experiment performed in Naples by using the TTT-3 tandem accelerator, the 19F(p, α0) reaction has been investigated at low bombarding energies, Ep = 0.6–1 MeV. Excitation functions and angular distributions have been obtained by using several solid state detectors preceded by thin aluminium absorbers. By analysing angular distributions in terms of Legendre and cosine polynomials, a few spectroscopic ambiguities concerning the excited states of the compound nucleus, 20Ne, in the excitation energy region E* = 13.4–13.8 MeV, have been solved. Moreover, this reaction plays an important role for the description of the fluorine nucleosynthesis. For this reason, the astrophysical S-factor has also been extracted and the results have been compared with the literature data.
Izvorni jezik
Engleski
Znanstvena područja
Fizika
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Časopis indeksira:
- Scopus