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RESEARCH PRODUCT
Dipole excitations of neutron-proton asymmetric nuclei
R. PalitP. AdrichT. AumannK. BoretzkyD. CortinaU. Datta PramanikTh.w. ElzeH. EmlingM. FallotH. GeisselM. Hellstro¨mK.l. JonesL.h. KhiemJ.v. KratzR. KulessaY. LeifelsA. LeistenschneiderG. Mu¨nzenbergC. NociforoP. ReiterH. SimonK. Su¨mmererW. Walussubject
PhysicsNuclear and High Energy PhysicsDipoleBond dipole momentNuclear TheoryTransition dipole momentNeutronSum rule in quantum mechanicsElectric dipole transitionAtomic physicsNuclear ExperimentNucleonExcitationdescription
Dipole excitations of unstable short-lived nuclei has been investigated experimentally by utilizing the electromagnetic-excitation process with high-energy secondary beams. From an exclusive measurement of the neutron-decay channels, differential cross sections with respect to excitation energy, which are directly related to the photo-absorption cross section and accordingly to the dipole-strength function, have been derived. Light neutron-rich nuclei in the mass range fromA = 11 toA = 23 with mass-over-charge ratios up toA/Z≈ 2.8 have been investigated systematically. Much in contrast to stable nuclei, low-lying dipole excitations well below the giant dipole resonance region have been observed as a general phenomenon for these neutron-proton asymmetric nuclei. For the neutron-rich oxygen isotopes, for instance, low-lyingE1 strength has been observed exhausting about 10% of the classical dipole sum rule below 15 MeV excitation energy. A quantitative analysis of low-lying threshold strength for loosely bound nuclei indicates that the characteristics of the dipole strength is directly related to the ground-state single-particle structure of the valence nucleon in the projectile.
year | journal | country | edition | language |
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2004-02-01 | Nuclear Physics A |