Opening in Bureauify…
ActiveResearch

<sup>127</sup>Xe quantification method development and intercomparison exercise

DOE

Source: doe_osti
OverviewIntelligenceProposals

Key Details

Posted Date
Source
doe_osti

Description

Monitoring of the atmosphere for fission products (<sup>131m</sup>Xe, <sup>133m</sup>Xe, <sup>133</sup>Xe, and <sup>135</sup>Xe) is performed by various laboratories to detect nuclear explosions. Quantification of <sup>127</sup>Xe is not routinely performed by laboratories measuring atmospheric radioxenon because it is not a fission product. <sup>127</sup>Xe was recently detected by a ground-based beta-gamma air monitoring system. When measured using beta-gamma coincidence detector systems, such as those in use on the International Monitoring System (IMS) of the Comprehensive Nuclear-Test-Ban Treaty (CTBT), <sup>127</sup>Xe can interfere with the quantification of fission product radioxenon due to overlap of the <sup>127</sup>Xe beta-gamma coincidence signatures with those of fission product radioxenon. Here, this work demonstrates quantification of <sup>127</sup>Xe at different laboratories with different measurement techniques. Production and purification of <sup>127</sup>Xe was performed by neutron activation of enriched <sup>126</sup>Xe. The purified <sup>127</sup>Xe was then split between laboratories, and detection and quantification methods were developed. At Idaho National Laboratory, a quantification method involving high purity germanium detectors was devised that included self-attenuation correction. At AWE, a beta-gamma coincidence counting method, as used in support of the IMS, was modified to enable the measurement and analysis of the <sup>127</sup>Xe samples. Corrections were made for self-attenuation, which showed a strong xenon volume dependency, for some coincidence signatures. The gas sample activity concentration was used as the comparison metric and it showed excellent agreement between the methods.. Authors: Robinson, Troy A. [Idaho National Laboratory (INL), Idaho Falls, ID (United States)] (ORCID:000000015317482X); Goodwin, Matthew [Atomic Weapons Establishment (AWE), Berkshire (United Kingdom)]; Foxe, Michael P. [Pacific Northwest National Laboratory (PNNL), Richland, WA (United States)]; Abromeit, Brittany L. [Pacific Northwest National Laboratory (PNNL), Richland, WA (United States)]; Mayer, Michael [Pacific Northwest National Laboratory (PNNL), Richland, WA (United States)] (ORCID:0000000176000873). DOE Contract: AC05-76RL01830; AC07-05ID14517. Subjects: 98 NUCLEAR DISARMAMENT, SAFEGUARDS, AND PHYSICAL PROTECTION; HPGe; High Purity Germanium; beta-gamma coincidence; beta-gamma detector; gamma detection; radioxenon; xe-127

Frequently Asked Questions

Is this research still open?+
Yes — this research from DOE is currently accepting responses. Track it on Bureauify for deadline alerts.
How do I apply for this research?+
Review the full solicitation documents on the source website (SAM.gov or Grants.gov), prepare your proposal per the instructions, and submit before the deadline. Use Bureauify to track the opportunity and get reminders.

Track This Research

Get alerts and track updates with Bureauify.

Track in BureauifyView on doe_osti

Intelligence

  • Win probability analysis
  • Competitive landscape
  • Incumbent analysis
  • Price-to-win estimate
  • Similar awards history
Open in Bureauify for full intelligence →

Data sourced from doe_osti

Search Government Records

100M+ government records — search across all categories

<sup>127</sup>Xe quantification method development and inter — DOE | Bureauify