English

Experiments towards a neutron target for measurements in inverse kinematics

Instrumentation and Detectors 2026-03-06 v1 Instrumentation and Methods for Astrophysics Nuclear Experiment

Abstract

Neutron-induced reactions play an important role in fundamental nuclear physics, nuclear astrophysics, and applications. In the case of reactions on rare isotopes, there are limited options for direct experimental measurements. The Neutron Target Demonstrator project at Los Alamos National Laboratory seeks to test the feasibility of moderating spallation neutrons within a 1~m3^3 graphite cube to create a standing neutron target for neutron-induced reaction measurements in inverse kinematics. This paper presents the results of experimental neutron flux distribution tests using neutron sources (ranging from 1~keV to 50~MeV) created by accelerators at the University of Notre Dame and Texas A\&M University. Measurements were made with both the full graphite cube as well as a ''half cube'' setup in which half of the graphite cube was removed. The measured distributions agree with simulated distributions in the case of the full cube moderator, although there remain discrepancies in certain cases for the half cube moderator. The results shown here will provide useful information for an upcoming experimental campaign to test the neutron target proof-of-principle.

Keywords

Cite

@article{arxiv.2603.04471,
  title  = {Experiments towards a neutron target for measurements in inverse kinematics},
  author = {S. F. Dellmann and C. M. Harrington and O. R. Cantrell and A. L. Cooper and A. Couture and D. V. Gorelov and I. Knapová and S. M. Mosby and R. Reifarth and A. Alvarez and A. Aprahamian and J. Butz and I. J. Bos and M. T. Febbraro and T. Hankins and B. M. Harvey and T. Heftrich and M. Le and J. J. Manfredi and A. B. McIntosh and K. V. Manukyan and M. Matney and S. Regener and D. Robertson and A. Simon and D. Sokolovic and E. Stech and G. Tabacaru and W. Tan and M. Wiescher and S. Yennello},
  journal= {arXiv preprint arXiv:2603.04471},
  year   = {2026}
}

Comments

23 pages, 17 figures