The effects of low- Z shielding on uranium isotope discrimination using the time-emission profiles of long-lived delayed neutrons
Creators
- 1. Department of Nuclear Engineering and Radiological Sciences, University of Michigan, Ann Arbor, MI 48109 (United States)
- 2. Oak Ridge National Laboratory, Oak Ridge, TN 37830 (United States)
Description
Characteristic radiation signals can often be obscured or distorted by relatively small amounts of shielding, as is the case for highly-enriched uranium (HEU). Methods that can detect and identify special nuclear material (SNM) even in the presence of shielding are therefore of high value in many nuclear security and nonproliferation applications. It has been previously shown that the buildup and decay time profiles of long-lived delayed neutron emission from induced fission are unique and can be used to successfully discriminate between uranium isotopes and infer enrichment without the need for a calibration standard. Because the long-lived delayed neutron precursors exhibit decay times on the order of tens of seconds, their time profiles are not sensitive to the delays associated with scattering or diffusion in shielding materials, which occur on much shorter time scales. The use of capture-based neutron detectors can also mitigate the effects of shielding, because unlike recoil-based detectors, they do not have a low-energy detection threshold, so that neutrons that lose their energy in the shielding are still detectable. In this work, the effects of low- shielding on the discrimination of uranium isotopes using delayed neutron time profile measurements are investigated for the first time. The delayed neutron buildup and decay time profiles of polyethylene-shielded HEU and depleted uranium objects are measured using two different capture-gated detector designs. The recorded profiles show good agreement with the shapes predicted from six-group delayed neutron models even with the shielding in place, and the enrichment of the HEU and DU objects was estimated accurately to within 5%. While this method shows potential for discriminating and characterizing extreme cases of enrichment when a moderate amount of shielding is present, simulation results suggest that significant limitations exist for intermediate enrichment levels due to distortions to the delayed neutron time profile caused by neutron reflection in the shielding.
Availability note (English)
Available from http://dx.doi.org/10.1016/j.nima.2021.165847Additional details
Identifiers
- DOI
- 10.1016/j.nima.2021.165847;
- PII
- S0168900221008329;
Publishing Information
- Journal Title
- Nuclear Instruments and Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment
- Journal Volume
- 1019
- Journal Page Range
- vp.
- ISSN
- 0168-9002
- CODEN
- NIMAER
INIS
- Country of Publication
- Netherlands
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 54086417
- Subject category
- S46: INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY; S11: NUCLEAR FUEL CYCLE AND FUEL MATERIALS;
- Descriptors DEI
- CALIBRATION STANDARDS; DELAYED NEUTRON PRECURSORS; DELAYED NEUTRONS; DEPLETED URANIUM; DESIGN; HIGHLY ENRICHED URANIUM; NEUTRON DETECTORS; NEUTRON EMISSION; NUCLEAR DECAY; NUCLEAR SECURITY; POLYETHYLENES; RECOILS; SCATTERING; SHIELDING; SHIELDING MATERIALS; SIMULATION; URANIUM ISOTOPES
- Descriptors DEC
- ACTINIDES; BARYONS; DECAY; ELEMENTARY PARTICLES; ELEMENTS; EMISSION; ENRICHED URANIUM; FERMIONS; FISSION NEUTRONS; HADRONS; ISOTOPE ENRICHED MATERIALS; ISOTOPES; MATERIALS; MEASURING INSTRUMENTS; METALS; NEUTRONS; NUCLEONS; ORGANIC COMPOUNDS; ORGANIC POLYMERS; POLYMERS; POLYOLEFINS; RADIATION DETECTORS; RADIOISOTOPES; SECURITY; STANDARDS; URANIUM
Optional Information
- Copyright
- Copyright (c) 2021 Elsevier B.V. All rights reserved.