Indirect Measurements of Radiative Capture Reactions on Lanthanides

ORAL

Abstract

Radiative capture and photodisintegration reactions of lanthanides involving neutrons are of particular importance to nuclear applications. Experimental constraints make direct measurements of these cross sections nontrivial. Therefore, it is essential to have a reliable method for predicting (γ,n) and (n,γ) cross sections. One alternative to direct a measurement in the mass and energy regions of interest is the surrogate method, which provides an indirect measurement for radiative capture reactions using a more feasible experiment that generates the desired compound nucleus. Surrogate measurements for 145,146Sm(n,γ) and 159,160Dy(n,γ) have been conducted using the LLNL Hyperion array at Texas A&M Univ. Cyclotron Institute. Hyperion is comprised of 12 HPGe clover detectors coupled to a segmented silicon telescope. Particle-γ coincidence data for (p,d) and (p,t) reactions on self-supporting 148Sm and 162Dy targets have been analyzed in collaboration with LLNL to extract nuclear structure information and γ-decay probabilities. Preliminary results will be presented.

*This work was supported by the NNSA under grants DE-NA-0003780 & DE-NA-0002132, LLNL contract DE-AC5207NA27344, Texas A&M Nuclear Physics grant DE-FG02-93ER40773, and by the NSF under grant PHYS-1430152 (JINA-CEE).

Presenters

  • Craig S. Reingold

    • Univ of Notre Dame
    • University of Notre Dame

Authors

  • Craig S. Reingold

    • Univ of Notre Dame
    • University of Notre Dame
  • Anna Simon

    • Univ of Notre Dame
    • University of Notre Dame
  • Nathan M. Cooper

    • Univ of Notre Dame
  • Richard Hughes

    • Lawrence Livermore National Laboratory
    • Lawrence Livermore Natl Lab
  • Jason T. Burke

    • Lawrence Livermore National Laboratory
    • Lawrence Livermore Natl Lab
  • Kelly A. Chipps

    • Oak Ridge National Lab
    • Oak Ridge National Laboratory
    • Oak Ridge Natl Lab
  • Sean P. Burcher

    • Univ of Tennessee, Knoxville
  • Sunghoon Ahn

    • Texas A&M Univ
  • Drew T. Blankstein

    • Univ of Notre Dame
  • Jolie A. Cizewski

    • Rutgers Univ
    • Rutgers University
  • Matthew Hall

    • Univ of Notre Dame
    • University of Notre Dame
  • Shuya Ota

    • Texas A&M Univ
  • Antti Saastamoinen

    • Texas A&M University
    • Cyclotron Institute, Texas A&M University, College Station, Texas 77843, USA
    • Texas A&M Univ
  • Konrad Schmidt

    • National Superconducting Cyclotron Laboratory
    • Michigan State Univ, NSCL
  • Benjamin Schroeder

    • Cyclotron Institute, Texas A&M University
    • Texas A&M University
    • Texas A&M Univ
  • Sriteja Upadhyayula

    • Texas A&M Univ
    • Cyclotron Institute, Texas A&M University