Determining reactor fuel type from continuous antineutrino monitoring
arXiv:1612.06494 · doi:10.1103/PhysRevApplied.8.034005
Abstract
We investigate the ability of an antineutrino detector to determine the fuel type of a reactor. A hypothetical 5t antineutrino detector is placed 25m from the core and measures the spectral shape and rate of antineutrinos emitted by fission fragments in the core for a number of 90 day periods. Our results indicate that four major fuel types can be differentiated from the variation of fission fractions over the irradiation time with a true positive probability of detection at 95%. In addition, we demonstrate that antineutrinos can identify the burn-up at which weapons-grade mixed-oxide (MOX) fuel would be reduced to reactor-grade MOX on average, providing assurance that plutonium disposition goals are met. In addition, we investigate removal scenarios where plutonium is purposefully diverted from a mixture of MOX and low-enriched uranium (LEU) fuel. Finally, we discuss how our analysis is impacted by a spectral distortion around 6MeV observed in the antineutrino spectrum measured from commercial power reactors.
6 pages, 3 figures
References in corpus (12)
- Observation of Energy and Baseline Dependent Reactor Antineutrino Disappearance in the RENO Experiment
- Measurement of the Reactor Antineutrino Flux and Spectrum at Daya Bay
- Measurement of electron antineutrino oscillation based on 1230 days of operation of the Daya Bay experiment
- Evolution of the Reactor Antineutrino Flux and Spectrum at Daya Bay
- Reactor Neutrino Spectra
- The Possible Origin and Implications of the Shoulder in Reactor Neutrino Spectra
- Online Monitoring of the Osiris Reactor with the Nucifer Neutrino Detector
- Reactor antineutrino monitoring with a plastic scintillator array as a new safeguards method
- The PROSPECT Physics Program
- Monitoring the Thermal Power of Nuclear Reactors with a Prototype Cubic Meter Antineutrino Detector
- Antineutrino monitoring for the Iranian heavy water reactor
- Reactor antineutrino fluxes - status and challenges
Cited by in corpus (8)
- Neutrino Detectors as Tools for Nuclear Security
- Flavor-dependent radiative corrections in coherent elastic neutrino-nucleus scattering
- Antineutrino Energy Spectrum Unfolding Based on the Daya Bay Measurement and Its Applications
- Observation of Reactor Antineutrinos with a Rapidly-Deployable Surface-Level Detector
- Prospects for Improved Understanding of Isotopic Reactor Antineutrino Fluxes
- PROSPECT-II Physics Opportunities
- Nu Tools: Exploring Practical Roles for Neutrinos in Nuclear Energy and Security
- Exploring Current Constraints on Antineutrino Production by Pu and Paths Towards the Precision Reactor Flux Era