Impurity effect of Lambda particle on the structure of 18F and 19F_Lambda
arXiv:1208.5352 · doi:10.1103/PhysRevC.86.044331
Abstract
We perform three-body model calculations for a -shell hypernucleus F () and its core nucleus F (), employing a density-dependent contact interaction between the valence proton and neutron. We find that the value from the first excited state (with spin and parity of ) to the ground state () is slightly decreased by the addition of a particle, which exhibits the so called shrinkage effect of particle. We also show that the excitation energy of the state is reduced in F compared to F, as is observed in a -shell nucleus Li. We discuss the mechanism of this reduction of the excitation energy, pointing out that it is caused by a different mechanism from that in Li.
8 pages, 3 figures
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- Dependence of two-proton radioactivity on nuclear pairing models
- Magnetic dipole excitations based on the relativistic nuclear energy density functional
- Magnetic dipole excitation and its sum rule in nuclei with two valence nucleons