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NI Dongdong (倪冬冬), REN Zhongzhou (任中洲). Systematic Calculations of α-Decay Half-Lives Using Microscopic Deformed Potentials[J]. Plasma Science and Technology, 2012, 14(7): 588-594. DOI: 10.1088/1009-0630/14/7/05
Citation: NI Dongdong (倪冬冬), REN Zhongzhou (任中洲). Systematic Calculations of α-Decay Half-Lives Using Microscopic Deformed Potentials[J]. Plasma Science and Technology, 2012, 14(7): 588-594. DOI: 10.1088/1009-0630/14/7/05

Systematic Calculations of α-Decay Half-Lives Using Microscopic Deformed Potentials

Funds: supported by National Natural Science Foundation of China (Nos. 10535010, 10675090, 10775068, 10735010, 10975072, and 11035001), by 973 National Major State Basic Research and Development of China (Nos. 2007CB815004 and 2010CB327803), by CAS Knowledge Innovation Project No. KJCX2-SW-N02, and by Research Fund of Doctoral Point (RFDP) (Nos. 20070284016 and 20100091110028)
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  • Received Date: May 16, 2011
  • A new version of the generalized density-dependent cluster model (GDDCM) is developed to describe an α particle tunneling through a deformed potential barrier. The microscopic deformed potential is numerically constructed in the double-folding model using the multipole expansion method. The decay width of an α-cluster state is evaluated using the integral of the quasi-bound state wave function, the scattering state wave function, and the difference of potentials. We perform a systematic calculation of α-decay half-lives for favored transitions in even-even nuclei ranging from Z=52 to Z=104. The calculated half-lives are in good agreement with the experimental values. The relation between nuclear deformations and α-decay half-lives is also discussed in details.
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