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Neutron elastic scattering on calcium isotopes from chiral nuclear optical potentials

Title
Neutron elastic scattering on calcium isotopes from chiral nuclear optical potentials
Authors
Whitehead, T. R.Lim, Y.Holt, J. W.
Ewha Authors
임연환
SCOPUS Author ID
임연환scopus
Issue Date
2020
Journal Title
PHYSICAL REVIEW C
ISSN
0556-2813JCR Link

1089-490XJCR Link
Citation
PHYSICAL REVIEW C vol. 101, no. 6
Publisher
AMER PHYSICAL SOC
Indexed
SCIE; SCOPUS WOS
Document Type
Article
Abstract
We formulate microscopic neutron-nucleus optical potentials from many-body perturbation theory based on chiral two- and three-body forces. The neutron self-energy is first calculated in homogeneous matter to second order in perturbation theory, which gives the central real and imaginary terms of the optical potential. The real spin-orbit term is calculated separately from the density matrix expansion using the same chiral interaction as in the self-energy. Finally, the full neutron-nucleus optical potential is derived within the improved local density approximation utilizing mean-field models consistent with the chiral nuclear force employed. We compare the results of the microscopic calculations to phenomenological models and experimental data up to projectile energies of E = 200 MeV. Experimental elastic differential scattering cross sections and vector analyzing powers are generally well reproduced by the chiral optical potential, but we find that total cross sections are overestimated at high energies.
DOI
10.1103/PhysRevC.101.064613
Appears in Collections:
사범대학 > 과학교육과 > Journal papers
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