DocumentCode :
111311
Title :
Uncertainty of Plutonium Isotopic Measurements with Microcalorimeter and High-Purity Germanium Detectors
Author :
Hoover, Andrew S. ; Winkler, R. ; Rabin, Michael W. ; Bennett, Douglas A. ; Doriese, W.B. ; Fowler, John W. ; Hayes-Wehle, James ; Horansky, Robert D. ; Reintsema, Carl D. ; Schmidt, Daniel R. ; Vale, Leila R. ; Ullom, Joel N. ; Schaffer, K.
Author_Institution :
Los Alamos Nat. Lab., Los Alamos, NM, USA
Volume :
61
Issue :
4
fYear :
2014
fDate :
Aug. 2014
Firstpage :
2365
Lastpage :
2372
Abstract :
The nondestructive assay (NDA) of plutonium-bearing materials using gamma-ray spectroscopy supports global nuclear nonproliferation and safeguards efforts. High-purity germanium (HPGe) detectors have been used for this application for decades, but the uncertainty limit remains around 1% relative error for measured isotope ratios, an order of magnitude larger than destructive assay. To lower NDA uncertainty limits, we are pursuing new measurement technology using superconducting microcalorimeter detectors, and assessing the sources of current uncertainty limits. We compare results from analysis of plutonium isotopic standards using HPGe and microcalorimeter detectors, and find lower random error for the microcalorimeter data. Uncertainties in the reference values of constants of nature contribute to the total measurement error. For one particular set of constants, the gamma-ray energies, we find that microcalorimeter analysis is much less sensitive (more than a factor of ten) to the uncertainty in nuclear data than HPGe.
Keywords :
calorimeters; gamma-ray spectroscopy; germanium; germanium radiation detectors; measurement uncertainty; plutonium; Ge; Pu; gamma-ray energies; gamma-ray spectroscopy; global nuclear nonproliferation; high-purity germanium detectors; microcalorimeter; nondestructive assay; plutonium isotopic measurements; relative error; safeguards efforts; superconducting microcalorimeter detectors; uncertainty limit; Detectors; Energy resolution; Gamma-rays; Isotopes; Measurement uncertainty; Uncertainty; X-rays; Gamma-ray detectors; measurement uncertainty; spectroscopy; superconducting photodetectors;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2014.2332275
Filename :
6866238
Link To Document :
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