Giant Dipole Resonance decay of hot rotating 88Mo

An experiment focusing on study of the properties of hot rotating compound nucleus of 88Mo was performed in LNL Legnaro using 48Ti beam at energies of 300 and 600 MeV on 40Ca target. The compound nucleus was produced at the temperatures of 3 and 4.5 MeV, with angular momentum distribution with lmax...

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Main Authors: Ciemała M., Kmiecik M., Maj A., Kravchuk V.L., Gramegna F., Barlini S., Casini G., Camera F.
Format: Article
Language:English
Published: EDP Sciences 2014-03-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/20146602020
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author Ciemała M.
Kmiecik M.
Maj A.
Kravchuk V.L.
Gramegna F.
Barlini S.
Casini G.
Camera F.
author_facet Ciemała M.
Kmiecik M.
Maj A.
Kravchuk V.L.
Gramegna F.
Barlini S.
Casini G.
Camera F.
author_sort Ciemała M.
collection DOAJ
description An experiment focusing on study of the properties of hot rotating compound nucleus of 88Mo was performed in LNL Legnaro using 48Ti beam at energies of 300 and 600 MeV on 40Ca target. The compound nucleus was produced at the temperatures of 3 and 4.5 MeV, with angular momentum distribution with lmax > 60 ħ (i.e. exceeding the crtical angular momentum for fission). High-energy gamma rays, measured in coincidence with evaporation residues and alpha particles, were analyzed with the statistical model. The GDR parameters were obtained from the best fit to the data, which allowed investigating an evolution of the GDR width up to high temperatures.
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spelling doaj.art-99c0f260439c476f828b73c25f1c92332022-12-21T23:15:51ZengEDP SciencesEPJ Web of Conferences2100-014X2014-03-01660202010.1051/epjconf/20146602020epjconf_inpc2013_02020Giant Dipole Resonance decay of hot rotating 88MoCiemała M.Kmiecik M.Maj A.Kravchuk V.L.Gramegna F.Barlini S.Casini G.Camera F.An experiment focusing on study of the properties of hot rotating compound nucleus of 88Mo was performed in LNL Legnaro using 48Ti beam at energies of 300 and 600 MeV on 40Ca target. The compound nucleus was produced at the temperatures of 3 and 4.5 MeV, with angular momentum distribution with lmax > 60 ħ (i.e. exceeding the crtical angular momentum for fission). High-energy gamma rays, measured in coincidence with evaporation residues and alpha particles, were analyzed with the statistical model. The GDR parameters were obtained from the best fit to the data, which allowed investigating an evolution of the GDR width up to high temperatures.http://dx.doi.org/10.1051/epjconf/20146602020
spellingShingle Ciemała M.
Kmiecik M.
Maj A.
Kravchuk V.L.
Gramegna F.
Barlini S.
Casini G.
Camera F.
Giant Dipole Resonance decay of hot rotating 88Mo
EPJ Web of Conferences
title Giant Dipole Resonance decay of hot rotating 88Mo
title_full Giant Dipole Resonance decay of hot rotating 88Mo
title_fullStr Giant Dipole Resonance decay of hot rotating 88Mo
title_full_unstemmed Giant Dipole Resonance decay of hot rotating 88Mo
title_short Giant Dipole Resonance decay of hot rotating 88Mo
title_sort giant dipole resonance decay of hot rotating 88mo
url http://dx.doi.org/10.1051/epjconf/20146602020
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AT gramegnaf giantdipoleresonancedecayofhotrotating88mo
AT barlinis giantdipoleresonancedecayofhotrotating88mo
AT casinig giantdipoleresonancedecayofhotrotating88mo
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