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Ground-state configuration of neutron-rich Aluminum isotopes through Coulomb breakup

S. Chakraborty ; U.D. Pramanik ; T. Aumann ; S. Beceiro ; K. Boretzky ; C. Caesar ; B.V. Carlson ; W.N. Catford ; S. Chatterjee ; M. Chartier ; D. Cortina-Gil ; G.D. Angelis ; D. González-Díaz ; H. Emling ; P.D. Fernández ; L.M. Fraile ; O.V. Ershova ; H. Geißel ; M. Heil ; Björn Jonson (Institutionen för fundamental fysik) ; A. Kelić ; Håkan T. Johansson (Institutionen för fundamental fysik) ; R. Krüecken ; T. Kröll ; J. Kurcewicz ; C.E. Langer ; T.L. Bleis ; Y. Leifels ; G. Münzenberg ; J. Marganiec ; C. Nociforo ; A. Najafi ; V. Panin ; S. Paschalis ; S. Pietri ; R. Plag ; A. Rahaman ; R. Reifarth ; V. Ricciardi ; D.M. Rossi ; J. Ray ; H. Simon ; C. Scheidenberger ; S. Typel ; J.E. Taylor ; Y. Togano ; V. Volkov ; H. Weick ; A. Wagner ; F. Wamers ; M. Weigand ; J.S. Winfield ; D.O. Yakorev ; M. Zorić
EPJ Web of Conferences (2101-6275). Vol. 66 (2014),
[Konferensbidrag, refereegranskat]

Neutron-rich 34,35Al isotopes have been studied through Coulomb excitation using LAND-FRS setup at GSI, Darmstadt. The method of invariant mass analysis has been used to reconstruct the excitation energy of the nucleus prior to decay. Comparison of experimental CD cross-section with direct breakup model calculation with neutron in p3/2 orbital favours 34Al(g.s) - νp3/2 as ground state configuration of 35Al. But ground state configuration of 34Al is complicated as evident from γ-ray spectra of 33Al after Coulomb breakup of 34Al. © Owned by the authors, published by EDP Sciences, 2014.



Denna post skapades 2014-05-07. Senast ändrad 2015-03-30.
CPL Pubid: 197686

 

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Institutioner (Chalmers)

Institutionen för fundamental fysik (2005-2015)

Ämnesområden

Fysik
Subatomär fysik

Chalmers infrastruktur