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Theoretical Investigation of the Exotic Structure of the Mirror Nuclei |
LIANG Yu-Jie1,2,3;LI Xi-Han1,2,3;DENG Fu-Guo1,2,3;LIU Zu-Hua4;ZHOU Hong-Yu1,2,3 |
1The Key Laboratory of Beam Technology and Material Modification of Minister of Education, Beijing Normal University, Beijing 100875
2Institute of Low Energy Nuclear Physics, and Department of Material Science and Engineering, Beijing Normal University, Beijing 100875
3Beijing Radiation Center, Beijing 100875
4China Institute of Atomic Energy, Beijing 102413 |
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Cite this article: |
LIANG Yu-Jie, LI Xi-Han, DENG Fu-Guo et al 2006 Chin. Phys. Lett. 23 1142-1145 |
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Abstract The exotic structures of the ground state of the mirror nuclei 17Ne and 17N are investigated by means of the asymptotic normalization coefficient (ANC) method to explore the role of the Coulomb interaction. The probabilities of a valence nucleon outside the binding-potential are P=56.69±7.462.98% for 17Ne and P=45.51±5.812.32% for 17N. The rms radii are (r2)1/2=5.06±0.300.11fm and (r2) 1/2=4.24±0.160.06fm, respectively. The results obtained are nearly independent of the potential parameters. According to the halo occurrence conditions, it is suggested that 17Ne is a two-proton halo and 17N is a two-neutron skin. Moreover, two effects of the Coulomb interaction on the exotic structure are analysed. From the present results, the exotic structure of the nucleus in the proton-rich side is more obvious than that of its mirror nucleus because of the Coulomb interaction.
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Keywords:
21.10.Ft
21.10.Gv
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Published: 01 May 2006
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PACS: |
21.10.Ft
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(Charge distribution)
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21.10.Gv
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(Nucleon distributions and halo features)
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