activity
20172026
most citedSystematic study of the propagation of uncertainties to transfer observables

2 citations · 2 across the 7 of their papers we have counts for

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14 papers · 1 filter

nucl-th2026

C inelastic excitation: A single-particle versus a collective process

C. Beckman, M. Catacora-Rios, C. Hebborn +1

Background: The excitation of one-neutron halo nucleus C from the ground state to the first excited state was measured at Argonne National Laboratory by impi…

nucl-th2026

Matter radii from interaction cross sections using microscopic nuclear densities

A. J. Smith, K. Godbey, C. Hebborn +3

Understanding how nuclear size evolves with the number of protons and neutrons tests our models of strongly interacting matter. The nuclear charge (and proton) radii accessible thr…

nucl-th2025

Systematic study of the validity of the eikonal model including uncertainties

Daniel Shiu, Chloë Hebborn, Filomena M. Nunes

Nuclear reactions at intermediate beam energies are often interpreted using the eikonal model. In the analysis of complex reaction probes, where few-body reaction methods are neede…

nucl-th20252 cited

Systematic study of the propagation of uncertainties to transfer observables

Chloë Hebborn, Filomena M. Nunes

A systematic study of parametric uncertainties in transfer reactions is performed using the recently developed uncertainty quantified global optical potential (KDUQ). We consider r…

nucl-th2024

Uncertainty quantification in reactions

A. J. Smith, C. Hebborn, F. M. Nunes +1

Charge-exchange reactions are versatile probes for nuclear structure. In particular, when populating isobaric analog states, these reactions are used to study isovector nuclear den…

nucl-th2024

The role of the likelihood for elastic scattering uncertainty quantification

C. D. Pruitt, A. E. Lovell, C. Hebborn +1

Background: Analyses of elastic scattering with the optical model (OMP) are widely used in nuclear reactions. Purpose: Previous work compared a traditional frequentist approach and…