Excitation function measurement of Sm(,n) reaction at sub-Coulomb energies and detailed covariance analysis
arXiv:2602.21011 · doi:10.1016/j.nuclphysa.2026.123459
Abstract
The cross-section measurement of Sm(,n)Gd (T38.06(12) h) reaction has been performed at sub-Coulomb energies around 1421 MeV ( MeV) using the stacked foil activation technique. Irradiated targets were prepared from enriched (67\%) SmO powder using molecular deposition technique between thickness 280350 g/cm on high purity Al backing. A detailed simulation has been carried out to address the energy uncertainty in the irradiated beam energy followed by a comprehensive discussion of various uncertainties in the form of covariance and correlation matrices. Finally the excitation functions are compared with the previously measured experimental data from literature and the theoretical predictions obtained using Hauser-Feshbach statistical model code.
References in corpus (5)
- Further explorations of the alpha-particle optical model potential at low energies for the mass range A=45-209
- Measurement of alpha induced reaction cross-sections on Mo with detailed covariance analysis
- Description of nuclear photoexcitation by Lorentzian expressions for electric dipole photon strength function
- Cross section measurement of the 144Sm(alpha,n)147Gd reaction for studying the alpha-nucleus optical potential at astrophysical energies
- Measurement of Sm(p,) cross-section at Gamow energies