0000000000241768

AUTHOR

S. Wan

showing 3 related works from this author

Measurements of the dipole response with radioactive beams

2001

PhysicsNuclear and High Energy PhysicsDipoleAtomic physics
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Giant resonances in unstable oxygen isotopes

1999

Abstract Electromagnetic and nuclear breakup of the neutron-rich Oxygen isotopes ranging from A = 17 to A = 22 is studied experimentally in reactions at energies around 600 MeV/u. The beams were produced in fragmentation reactions and separated by the GSI Fragment Separator FRS. By measuring the four-momenta of all decay products after inelastic scattering and neutron decay of the projectile, the excitation energy is determined. From the differential cross sections dσ dE ∗ for electromagnetic excitation, the E1-strength distributions can be deduced. For 18,20,22O, low-lying dipole strength is observed, exhausting about 5% of the Thomas Reiche Kuhn sumrule for energies up to 5 MeV above the …

PhysicsNuclear reactionNuclear and High Energy PhysicsScatteringNuclear TheoryInelastic scatteringIsotopes of oxygenNuclear physicsDipoleGiant resonanceNeutronAtomic physicsNuclear ExperimentExcitationNuclear Physics A
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Photoneutron cross sections for unstable neutron-rich oxygen isotopes.

2000

The dipole response of stable and unstable neutron-rich oxygen nuclei of masses A = 17 to A = 22 has been investigated experimentally utilizing electromagnetic excitation in heavy-ion collisions at beam energies about 600 MeV/nucleon. A kinematically complete measurement of the neutron decay channel in inelastic scattering of the secondary beam projectiles from a Pb target was performed. Differential electromagnetic excitation cross sections d sigma/dE were derived up to 30 MeV excitation energy. In contrast to stable nuclei, the deduced dipole strength distribution appears to be strongly fragmented and systematically exhibits a considerable fraction of low-lying strength.

Nuclear reactionPhysicsDipoleScatteringNuclear TheoryHadronGeneral Physics and AstronomyNeutronInelastic scatteringAtomic physicsNuclear ExperimentNucleonExcitationPhysical review letters
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