Analytical parametrization of fusion barriers using proximity potentials
arXiv:1005.5214 · doi:10.1103/PhysRevC.81.064608
Abstract
Using the three versions of proximity potentials, namely proximity 1977, proximity 1988, and proximity 2000, we present a pocket formula for fusion barrier heights and positions. This was achieved by analyzing as many as 400 reactions with mass between 15 and 296. Our parametrized formula can reproduced the exact barrier heights and positions within an accuracy of . A comparison with the experimental data is also in good agreement.
12 pages, 5 figures
References in corpus (4)
- Comparison of different proximity potentials for asymmetric colliding nuclei
- Energy dependence of nucleus-nucleus potential close to the Coulomb barrier
- A systematic study of the fusion barriers using different proximity type potentials for colliding nuclei : New extensions
- Ni+Ni fusion reaction calculated with the density-constrained time-dependent Hartree-Fock formalism
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