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Coulomb Dissociation experiment of 27P

J. Marganiec ; S.B. Novo ; S. Typel ; C. Wimmer ; H. Álvarez-Pol ; T. Aumann ; K. Boretzky ; E. Casarejos ; A. Chatillon ; D.C. Gil ; U. Datta Pramanik ; Z. Elekes ; Z. Fülöp ; D. Galaviz ; H. Geißel ; S. Giron ; U. Greife ; F. Hammache ; M. Heil ; J.D. Hoffman ; Håkan T. Johansson (Institutionen för fundamental fysik) ; O.A. Kiselev ; N. Kurz ; Karin J. Larsson ; T. Le Bleis ; Y.A. Litvinov ; K. Mahata ; C. Muentz ; C. Nociforo ; W. Ott ; S. Paschalis ; R. Plag ; W. Prokopowicz ; C. Rodríguez-Tajes ; D.M. Rossi ; H. Simon ; M. Stǎnoiu ; J. Stroth ; K. Sümmerer ; A. Wagner ; F. Wamers ; H. Weick
Acta Physica Polonica B (0587-4254). Vol. 46 (2015), 3, p. 473-476.
[Artikel, refereegranskad vetenskaplig]

The 26Si(p; γ)27P reaction, which might play an important role in the rp process, was studied by the Coulomb Dissociation method. The experiment was performed at GSI, Darmstadt. A secondary 27P ion beam of 500 MeV/nucleon was directed onto a Pb target. From this experiment, the Coulomb Dissociation cross section, σCoulex, will be deduced and then converted to the photoabsorption cross section, σphoto, and the radiativecapture cross section, σcap. Also information on the structure of 27P will be obtained. The analysis is in progress.



Denna post skapades 2015-05-12. Senast ändrad 2015-11-19.
CPL Pubid: 217070

 

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Institutioner (Chalmers)

Institutionen för fundamental fysik (2005-2015)

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Kemi

Chalmers infrastruktur