Extraction of the second and fourth radial moments of nuclear charge density from the elastic electron-nucleus scattering
arXiv:2108.11729 · doi:10.1088/1361-6471/ac2cd5
Abstract
The expression for the radial moments of the nuclear charge density has been discussed under the plane wave Born approximation (PWBA) method recently, which is significant to investigate the nuclear surface thickness and neutron distribution radius. In this paper, we extend the studies of extracting second-order moment and fourth-order moment from the Coulomb form factors by the distorted wave Born approximation (DWBA) at the small momentum transfer region. Based on the relativistic mean-field (RMF) calculations, the DWBA form factors are expanded into , where the corresponding charge distributions are corrected by the contributions of neutron and spin-orbit densities. In the small region, it is found that the experimental can be well reproduced by considering the contributions of the at the small region. Through further analyzing the second-order and fourth-order expansion coefficients of the , the relationship between the expansion coefficients and proton number is obtained. By the relationship, we extract the and from the limited experimental data of form factors at the small region. Within the permissible range of error, the extracted are consistent with the experimental data in this paper.
References in corpus (11)
- Neutron-Rich Nuclei in Heaven and Earth
- Solution of the center-of-mass problem in nuclear structure calculations
- Nuclear charge densities in spherical and deformed nuclei: towards precise calculations of charge radii
- The effect of spin-orbit nuclear charge density corrections due to the anomalous magnetic moment on halonuclei
- Theoretical study of elastic electron scattering off stable and exotic nuclei
- Beyond the charge radius: the information content of the fourth radial moment
- Proton root-mean-square radii and electron scattering
- Electron scattering form factors from exotic nuclei
- Probing nuclear skins and halos with elastic electron scattering
- Electron scattering in isotonic chains as a probe of the proton shell structure of unstable nuclei
- Nucleon momentum distribution of from the axially deformed relativistic mean-field model with nucleon--nucleon correlations