AbstractInelastic scattering cross sections to individual bound excited states of 104Sn were measured at 150 MeV/u beam energy and analyzed to evaluate the contribution of neutron and proton collectivity. State-of-the-art Quasi-Particle Random Phase Approximation (QRPA) with the D1M Gogny interaction reproduces the experimental proton collectivity and our inelastic scattering cross sections once used as input for a reaction calculation together with the Jeukenne–Lejeune–Mahaux (JLM) potentials. Experimental inelastic scattering cross section decreases by 40(24)% from 112Sn to 104Sn. The present work shows that (i) proton and neutron collectivities are proportional over a large range of tin isotopes (including 104Sn), as is typical for isosc...
The electric dipole is an important property of heavy nuclei. Precise information on the electric di...
The electric dipole is an important property of heavy nuclei. Precise information on the electric di...
Our understanding of nuclear properties in the vicinity of 100Sn, suggested to be the heaviest doubl...
International audienceInelastic scattering cross sections to individual bound excited states of 104S...
International audienceInelastic scattering cross sections to individual bound excited states of 104S...
International audienceInelastic scattering cross sections to individual bound excited states of 104S...
International audienceInelastic scattering cross sections to individual bound excited states of 104S...
5 pags.; 5 figs.; 1 tab.; Open Access funded by Creative Commons Atribution Licence 4.0© 2015 The A...
Inelastic scattering cross sections to individual bound excited states of 104 Sn were measured at 15...
Inelastic scattering cross sections to individual bound excited states of Sn-104 were measured at 15...
Inelastic scattering cross sections to individual bound excited states of Sn-104 were measured at 15...
Inelastic scattering cross sections to individual bound excited states of 104 Sn were measured at 15...
Inelastic scattering cross sections to individual bound excited states of 104 Sn were measured at 15...
Atomic nuclei with a few nucleons beyond shell closures are important in understanding the evolution...
The electric dipole is an important property of heavy nuclei. Precise information on the electric di...
The electric dipole is an important property of heavy nuclei. Precise information on the electric di...
The electric dipole is an important property of heavy nuclei. Precise information on the electric di...
Our understanding of nuclear properties in the vicinity of 100Sn, suggested to be the heaviest doubl...
International audienceInelastic scattering cross sections to individual bound excited states of 104S...
International audienceInelastic scattering cross sections to individual bound excited states of 104S...
International audienceInelastic scattering cross sections to individual bound excited states of 104S...
International audienceInelastic scattering cross sections to individual bound excited states of 104S...
5 pags.; 5 figs.; 1 tab.; Open Access funded by Creative Commons Atribution Licence 4.0© 2015 The A...
Inelastic scattering cross sections to individual bound excited states of 104 Sn were measured at 15...
Inelastic scattering cross sections to individual bound excited states of Sn-104 were measured at 15...
Inelastic scattering cross sections to individual bound excited states of Sn-104 were measured at 15...
Inelastic scattering cross sections to individual bound excited states of 104 Sn were measured at 15...
Inelastic scattering cross sections to individual bound excited states of 104 Sn were measured at 15...
Atomic nuclei with a few nucleons beyond shell closures are important in understanding the evolution...
The electric dipole is an important property of heavy nuclei. Precise information on the electric di...
The electric dipole is an important property of heavy nuclei. Precise information on the electric di...
The electric dipole is an important property of heavy nuclei. Precise information on the electric di...
Our understanding of nuclear properties in the vicinity of 100Sn, suggested to be the heaviest doubl...