Dynamical Dipole mode in heavy-ion fusion reactions by using stable and radioactive beams
The existence of the dynamical dipole mode in the 192Pb composite system was investigated through the study of its prompt γ decay employing the 40Ca + 152Sm and 48Ca + 144Sm reactions at Elab =11 and 10.1 MeV/u, respectively. The γ-rays and light charged particles were detected in coincidence with e...
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2011-10-01
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Series: | EPJ Web of Conferences |
Online Access: | http://dx.doi.org/10.1051/epjconf/20111710006 |
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doaj-cba540bc2ecb4fdab6d2024c2fb74a712021-08-02T11:58:12ZengEDP SciencesEPJ Web of Conferences2100-014X2011-10-01171000610.1051/epjconf/20111710006Dynamical Dipole mode in heavy-ion fusion reactions by using stable and radioactive beamsMolini P.Mazzocchi C.Mazzocco M.Martin B.La Commara M.Maiolino C.Inglima G.Guglielmetti A.Farinon F.Emanuele U.Di Toro M.Del Zoppo A.De Rosa A.Coniglione R.De Filippo E.Colonna M.Boiano A.Baran V.Agodi C.Alba R.Silvestri R.Parascandolo C.Pierroutsakou D.Rizzo C.Romoli M.Sandoli M.Santonocito D.Signorini C.Soramel F.Trifirò A.Trimarchi M.The existence of the dynamical dipole mode in the 192Pb composite system was investigated through the study of its prompt γ decay employing the 40Ca + 152Sm and 48Ca + 144Sm reactions at Elab =11 and 10.1 MeV/u, respectively. The γ-rays and light charged particles were detected in coincidence with evaporation residues and fission fragments. First results of this experiment show that the dynamical dipole mode survives in collisions involving heavier mass reaction partners than those studied previously. As a fast cooling mechanism on the fusion path, the prompt dipole γ radiation could be of interest for the synthesis of super-heavy elements through ”hot” fusion reactions. Furthermore, by using radioactive beams and the prompt γ radiation as a probe we could get information on the symmetry energy at sub-saturation densities.http://dx.doi.org/10.1051/epjconf/20111710006 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Molini P. Mazzocchi C. Mazzocco M. Martin B. La Commara M. Maiolino C. Inglima G. Guglielmetti A. Farinon F. Emanuele U. Di Toro M. Del Zoppo A. De Rosa A. Coniglione R. De Filippo E. Colonna M. Boiano A. Baran V. Agodi C. Alba R. Silvestri R. Parascandolo C. Pierroutsakou D. Rizzo C. Romoli M. Sandoli M. Santonocito D. Signorini C. Soramel F. Trifirò A. Trimarchi M. |
spellingShingle |
Molini P. Mazzocchi C. Mazzocco M. Martin B. La Commara M. Maiolino C. Inglima G. Guglielmetti A. Farinon F. Emanuele U. Di Toro M. Del Zoppo A. De Rosa A. Coniglione R. De Filippo E. Colonna M. Boiano A. Baran V. Agodi C. Alba R. Silvestri R. Parascandolo C. Pierroutsakou D. Rizzo C. Romoli M. Sandoli M. Santonocito D. Signorini C. Soramel F. Trifirò A. Trimarchi M. Dynamical Dipole mode in heavy-ion fusion reactions by using stable and radioactive beams EPJ Web of Conferences |
author_facet |
Molini P. Mazzocchi C. Mazzocco M. Martin B. La Commara M. Maiolino C. Inglima G. Guglielmetti A. Farinon F. Emanuele U. Di Toro M. Del Zoppo A. De Rosa A. Coniglione R. De Filippo E. Colonna M. Boiano A. Baran V. Agodi C. Alba R. Silvestri R. Parascandolo C. Pierroutsakou D. Rizzo C. Romoli M. Sandoli M. Santonocito D. Signorini C. Soramel F. Trifirò A. Trimarchi M. |
author_sort |
Molini P. |
title |
Dynamical Dipole mode in heavy-ion fusion reactions by using stable and radioactive beams |
title_short |
Dynamical Dipole mode in heavy-ion fusion reactions by using stable and radioactive beams |
title_full |
Dynamical Dipole mode in heavy-ion fusion reactions by using stable and radioactive beams |
title_fullStr |
Dynamical Dipole mode in heavy-ion fusion reactions by using stable and radioactive beams |
title_full_unstemmed |
Dynamical Dipole mode in heavy-ion fusion reactions by using stable and radioactive beams |
title_sort |
dynamical dipole mode in heavy-ion fusion reactions by using stable and radioactive beams |
publisher |
EDP Sciences |
series |
EPJ Web of Conferences |
issn |
2100-014X |
publishDate |
2011-10-01 |
description |
The existence of the dynamical dipole mode in the 192Pb composite system was investigated through the study of its prompt γ decay employing the 40Ca + 152Sm and 48Ca + 144Sm reactions at Elab =11 and 10.1 MeV/u, respectively. The γ-rays and light charged particles were detected in coincidence with evaporation residues and fission fragments. First results of this experiment show that the dynamical dipole mode survives in collisions involving heavier mass reaction partners than those studied previously. As a fast cooling mechanism on the fusion path, the prompt dipole γ radiation could be of interest for the synthesis of super-heavy elements through ”hot” fusion reactions. Furthermore, by using radioactive beams and the prompt γ radiation as a probe we could get information on the symmetry energy at sub-saturation densities. |
url |
http://dx.doi.org/10.1051/epjconf/20111710006 |
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