节点文献
Elastic scattering of 13C and 14C isotopes on a 208Pb target at energies of approximately five times the Coulomb barriers
【摘要】 The elastic scattering angular distributions of 13 C at 340 MeV and 14 C at 294 MeV and 342 MeV on a208Pb target,which correspond to approximately five times the Coulomb barriers,were measured at the Radioactive Ion Beam Line in Lanzhou.The data were analyzed within the optical model and continuum-discretized coupledchannels(CDCC) framework,and the results of both calculations could effectively account for the experimental data.The differential cross sections of elastic scattering revealed no particular suppression at the Coulomb nuclear interference peak angles,suggesting that the breakup coupling effects on the elastic scattering angular distributions were negligibly small in this incident energy region.The contributions from the couplings with inelastic states to the elastic cross sections were of minor importance within the angular range covered by these experiments.
【Abstract】 The elastic scattering angular distributions of 13 C at 340 MeV and 14 C at 294 MeV and 342 MeV on a208Pb target,which correspond to approximately five times the Coulomb barriers,were measured at the Radioactive Ion Beam Line in Lanzhou.The data were analyzed within the optical model and continuum-discretized coupledchannels(CDCC) framework,and the results of both calculations could effectively account for the experimental data.The differential cross sections of elastic scattering revealed no particular suppression at the Coulomb nuclear interference peak angles,suggesting that the breakup coupling effects on the elastic scattering angular distributions were negligibly small in this incident energy region.The contributions from the couplings with inelastic states to the elastic cross sections were of minor importance within the angular range covered by these experiments.
【Key words】 elastic scattering; radioactive ion beam; angular distribution; optical model; coupling effects;
- 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2024年03期
- 【分类号】O57
- 【下载频次】3