NUCLEAR PHYSICS |
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Half-Lives of Proton Emitters With a Deformed Density-Dependent Model |
QIAN Yi-Bin1**, REN Zhong-Zhou1,2,3, NI Dong-Dong1, SHENG Zong-Qiang1 |
1Department of Physcis, Nanjing University, Nanjing 210093
2Center of Theoretical Nuclear Physics, National Laboratory of Heavy-Ion Accelerator, Lanzhou 730000
3Kavli Institute for Theoretical Physics China, Beijing 100190
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Cite this article: |
QIAN Yi-Bin, REN Zhong-Zhou, NI Dong-Dong et al 2010 Chin. Phys. Lett. 27 112301 |
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Abstract Half-lives of proton radioactivity are investigated with a deformed density-dependent model. The single folding potential which is dependent on deformation and orientation is employed to calculate the proton decay width through the deformed potential barrier. In addition, the spectroscopic factor is taken into account in the calculation, which is obtained in the relativistic mean field theory with NL3. The calculated results of semi-spherical nuclei are found to be in good agreement with the experimental data, and the results of well-deformed nuclei are also satisfactory. Moreover, a formula for the spherical proton emission half-life based on the Gamow quantum tunneling theory is presented.
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Keywords:
23.50.+z
21.60.Gx
21.10.Jx
21.10.Tg
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Received: 09 June 2010
Published: 22 October 2010
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PACS: |
23.50.+z
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(Decay by proton emission)
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21.60.Gx
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(Cluster models)
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21.10.Jx
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(Spectroscopic factors and asymptotic normalization coefficients)
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21.10.Tg
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(Lifetimes, widths)
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