English

Isotopically resolved neutron total cross sections at intermediate energies

Nuclear Experiment 2020-09-09 v2 Nuclear Theory

Abstract

The neutron total cross sections σtot\sigma_{tot} of 16,18^{16,18}O, 58,64^{58,64}Ni, 103^{103}Rh, and 112,124^{112,124}Sn have been measured at the Los Alamos Neutron Science Center (LANSCE) from low to intermediate energies (3 Elab\leq E_{lab} \leq 450 MeV) by leveraging waveform-digitizer technology. The σtot\sigma_{tot} relative differences between isotopes are presented, revealing additional information about the isovector components needed for an accurate optical-model description away from stability. Digitizer-enabled σtot\sigma_{tot}-measurement techniques are discussed and a series of uncertainty-quantified dispersive optical model (DOM) analyses using these new data is presented, validating the use of the DOM for modeling light systems (16,18^{16,18}O) and systems with open neutron shells (58,64^{58,64}Ni and 112,124^{112,124}Sn). The valence-nucleon spectroscopic factors extracted for each isotope reaffirm the usefulness of high-energy proton reaction cross sections for characterizing depletion from the mean-field expectation.

Keywords

Cite

@article{arxiv.2006.00024,
  title  = {Isotopically resolved neutron total cross sections at intermediate energies},
  author = {C. D. Pruitt and R. J. Charity and L. G. Sobotka and J. M. Elson and D. E. M. Hoff and K. W. Brown and M. C. Atkinson and W. H. Dickhoff and H. Y. Lee and M. Devlin and N. Fotiades and S. Mosby},
  journal= {arXiv preprint arXiv:2006.00024},
  year   = {2020}
}

Comments

28 pages, 20 figures

R2 v1 2026-06-23T15:55:05.290Z