Derivation of capture cross section from quasielastic excitation function
arXiv:1304.3277 · doi:10.1103/PhysRevC.87.044611
Abstract
The relationship between the quasielastic excitation function and the capture cross section is derived. The quasielastic data is shown to be a useful tool to extract the capture cross sections and the angular momenta of the captured systems for the reactions O+Sm,Pb, Ne+Pb, and S+Zr at near and above the Coulomb barrier energies.
9 pages, 9 figures, will be published in PRC
References in corpus (3)
- Effects of nuclear deformation and neutron transfer in capture process, and origin of fusion hindrance at deep sub-barrier energies
- Search of systematic behavior of breakup probability in reactions with weakly bound projectiles at energies around Coulomb barrier
- Threshold energy for sub-barrier fusion hindrance phenomenon
Cited by in corpus (4)
- Derivation of reaction cross sections from experimental elastic backscattering probabilities
- Disagreement between capture probabilities extracted from capture and quasi-elastic backscattering excitation functions
- Derivation of breakup probabilities from experimental elastic backscattering data
- Derivation of capture and reaction cross sections from experimental quasi-elastic and elastic backscattering probabilities