Bulletin of the American Physical Society
2021 Fall Meeting of the APS Division of Nuclear Physics
Volume 66, Number 8
Monday–Thursday, October 11–14, 2021; Virtual; Eastern Daylight Time
Session KG: Nuclear Reactions: Heavy-Ions/Rare Isotope Beams II
11:30 AM–1:18 PM,
Wednesday, October 13, 2021
Room: Copley & Kenmore
Chair: Sean Kuvin, LANL
Abstract: KG.00001 : Using Bayesian analysis to constrain the momentum-dependence of the nuclear equation of state.*
11:30 AM–11:42 AM
Presenter:
Kyle W Brown
(Michigan State University)
Author:
Kyle W Brown
(Michigan State University)
Collaboration:
HiRA Collaboration
Recent experiments at the National Superconducting Cyclotron Laboratory were performed to help constrain these momentum-dependent interactions along with the density dependence. By measuring the kinetic energy spectra of neutrons and protons, or analogously using “pseudo neutrons” from measured tritons and helium-3, the sign and magnitude of this effective-mass splitting can be extracted, with the help of transport models. Collisions of beams of 40,48Ca at 50 and 140 MeV/A impinged on targets of 58,64Ni and 112,124Sn, and the light, charged particles and neutrons emitted in these collisions were detected. Charged particles up to boron were detected, with isotopic resolution, in the upgraded High-Resolution Array and neutrons were detected in the Large-Area Neuron Array. I will discuss some of the important physics motivations for studying the nuclear Equation of State, present details about the experiment setup, and then discuss some results on the spectral ratios with comparisons to transport model calculations. I will show results of a Bayesian analysis used to constrain the momentum and density dependence of the symmetry energy simultaneously.
*This research is supported by the National Science Foundation under Grant No. PHY-1565546 and the Department of Energy under Grant No. DE-NA0002923.
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