Because of the Coulomb barrier, reaction cross sections in astrophysics cannot be accessed directly at the relevant Gamow energies, unless very favourable conditions are met (e.g. LUNA—underground experiments). Theoretical extrapolations of available data are then needed to derive the astrophysical S(0)-factor. Various indirect processes have been used in order to obtain additional information on the parameters entering these extrapolations. The Trojan Horse Method is an indirect method which might help to bypass some of the problems typically encountered in direct measurements, namely the presence of the Coulomb barrier and the effect of the electron screening. However, a comparison with direct data in an appropriate energy region (e.g. around the Coulomb barrier) is crucial before extending the method to the relevant Gamow energy. Additionally, experimental and theoretical tests are needed to validate the assumptions underlying the method. The application of the Trojan Horse Method to some cases of interest is discussed.
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19 April 2001
TOURS SYMPOSIUM ON NUCLEAR PHYSICS IV: TOURS 2000
4-7 Sept 2000
Tours (France)
Research Article|
April 19 2001
The Trojan horse method in nuclear astrophysics Available to Purchase
M. Aliotta;
M. Aliotta
1Lehrstuhl für Experimentalphysik III, Universität Bochum–Bochum, Germany
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M. Lattuada;
M. Lattuada
2Laboratori Nazionali del Sud–Catania, Italy
3Dipartimento di Fisica e Astronomia, Università di Catania–Catania, Italy
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M. G. Pellegriti;
M. G. Pellegriti
2Laboratori Nazionali del Sud–Catania, Italy
4Dipartimento di Metodologie Fisiche e Chimiche per l’Ingegneria, Università di Catania–Catania, Italy
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R. G. Pizzone;
R. G. Pizzone
2Laboratori Nazionali del Sud–Catania, Italy
4Dipartimento di Metodologie Fisiche e Chimiche per l’Ingegneria, Università di Catania–Catania, Italy
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C. Spitaleri;
C. Spitaleri
2Laboratori Nazionali del Sud–Catania, Italy
4Dipartimento di Metodologie Fisiche e Chimiche per l’Ingegneria, Università di Catania–Catania, Italy
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Dj. Miljanic;
Dj. Miljanic
5Rudjer Boskovic Institute–Zagreb, Croatia
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C. Rolfs;
C. Rolfs
1Lehrstuhl für Experimentalphysik III, Universität Bochum–Bochum, Germany
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S. Typel;
S. Typel
6Sektion Physik, Ludwig-Maximilians Universität–München, Germany
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H. H. Wolter
H. H. Wolter
6Sektion Physik, Ludwig-Maximilians Universität–München, Germany
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M. Aliotta
1
M. Lattuada
2,3
M. G. Pellegriti
2,4
R. G. Pizzone
2,4
C. Spitaleri
2,4
Dj. Miljanic
5
C. Rolfs
1
S. Typel
6
H. H. Wolter
6
1Lehrstuhl für Experimentalphysik III, Universität Bochum–Bochum, Germany
2Laboratori Nazionali del Sud–Catania, Italy
3Dipartimento di Fisica e Astronomia, Università di Catania–Catania, Italy
4Dipartimento di Metodologie Fisiche e Chimiche per l’Ingegneria, Università di Catania–Catania, Italy
5Rudjer Boskovic Institute–Zagreb, Croatia
6Sektion Physik, Ludwig-Maximilians Universität–München, Germany
AIP Conf. Proc. 561, 116–126 (2001)
Citation
M. Aliotta, M. Lattuada, M. G. Pellegriti, R. G. Pizzone, C. Spitaleri, Dj. Miljanic, C. Rolfs, S. Typel, H. H. Wolter; The Trojan horse method in nuclear astrophysics. AIP Conf. Proc. 19 April 2001; 561 (1): 116–126. https://doi.org/10.1063/1.1372789
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