Advances in Predictive Nuclear Reaction Theory

INVITED · E01 · ID: 1746398





Presentations

  • ORAL · Invited

    Publication: Matthew Burrows et al., "Ab initio translationally invariant nucleon-nucleus optical potentials," arXiv:2307.00202 (submitted to Phys. Rev. C, 2023)

    Grigor H. Sargsyan et al., "Ab initio single-neutron spectroscopic overlaps in lithium isotopes," arXiv:2210.08843 (submitted to Phys. Rev. C, 2023)

    Alexis Mercenne et al., "Efficacy of the symmetry-adapted basis for ab initio nucleon-nucleus interactions for light- and intermediate-mass nuclei," Comp. Phys. Commun. 280 (2022) 108476, 10.1016/j.cpc.2022.108476

    Kristina D. Launey et al., "Nuclear Dynamics and Reactions in the Ab Initio Symmetry-Adapted Framework," Annu. Rev. Nucl. Part. Sci. 71 (2021) 253, 10.1146/annurev-nucl-102419-033316

    Presenters

    • Alexis Mercenne

      • Louisiana State University

    Authors

    • Alexis Mercenne

      • Louisiana State University
    • Kristina D Launey

      • Louisiana State University
    • Matthew B Burrows

      • Louisiana State University
    • Grigor H Sargsyan

      • FRIB/Michigan State University
    • Jutta E Escher

      • Lawrence Livermore National Laboratory
      • Lawrence Livermore Natl Lab
    • Jerry Draayer

      • Louisiana State University
    • Tomas Dytrych

      • Academy of Sciences of the Czech Republic, Louisiana State University
    • Robert B Baker

      • Ohio University
    • Daniel Langr

      • Department of Computer Systems, Faculty of Information Technology, Czech Technical University in Prague

    View abstract →

  • ORAL · Invited

    Presenters

    • Gregory Potel

      • Lawrence Livermore Natl Lab

    Authors

    • Gregory Potel

      • Lawrence Livermore Natl Lab
    • Grigor H Sargsyan

      • FRIB/Michigan State University
    • Jutta E Escher

      • Lawrence Livermore National Laboratory
      • Lawrence Livermore Natl Lab
    • Konstantinos Kravvaris

      • Lawrence Livermore National Laboratory
      • Lawrence Livermore Natl Lab

    View abstract →