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Halo structure of (14)Be
Authors:Labiche M  Orr N A  Marqués F M  Angélique J C  Axelsson L  Benoit B  Bergmann U C  Borge M J  Catford W N  Chappell S P  Clarke N M  Costa G  Curtis N  D'Arrigo A  de Góes Brennand E  Dorvaux O  Fazio G  Freer M  Fulton B R  Giardina G  Grévy S  Guillemaud-Mueller D  Hanappe F  Heusch B  Jones K L  Jonson B  Le Brun C  Leenhardt S  Lewitowicz M  Lopez M J  Markenroth K  Mueller A C  Nilsson T  Ninane A  Nyman G  de Oliveira F  Piqueras I  Riisager K  Saint Laurent M G  Sarazin F  Singer S M  Sorlin O  Stuttgé L
Affiliation:Laboratoire de Physique Corpusculaire, ISMRA et Université de Caen, France.
Abstract:The two-neutron halo nucleus (14)Be has been investigated in a kinematically complete measurement of the fragments ((12)Be and neutrons) produced in dissociation at 35 MeV/nucleon on C and Pb targets. Two-neutron removal cross sections, neutron angular distributions, and invariant mass spectra were measured, and the contributions from electromagnetic dissociation (EMD) were deduced. Comparison with three-body model calculations suggests that the halo wave function contains a large nu(2s(1/2))(2) admixture. The EMD invariant mass spectrum exhibited enhanced strength near threshold consistent with a nonresonant soft-dipole excitation.
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