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Measurement of the Antineutrino Spectrum from $^{235}$U Fission at HFIR with PROSPECT

Published 28 Dec 2018 in nucl-ex, hep-ex, and physics.ins-det | (1812.10877v2)

Abstract: This Letter reports the first measurement of the ${235}$U $\overline{\nu_{e}}$ energy spectrum by PROSPECT, the Precision Reactor Oscillation and Spectrum experiment, operating 7.9m from the 85MW${\mathrm{th}}$ highly-enriched uranium (HEU) High Flux Isotope Reactor. With a surface-based, segmented detector, PROSPECT has observed 31678$\pm$304 (stat.) $\overline{\nu{e}}$-induced inverse beta decays (IBD), the largest sample from HEU fission to date, 99% of which are attributed to ${235}$U. Despite broad agreement, comparison of the Huber ${235}$U model to the measured spectrum produces a $\chi2/ndf = 51.4/31$, driven primarily by deviations in two localized energy regions. The measured ${235}$U spectrum shape is consistent with a deviation relative to prediction equal in size to that observed at low-enriched uranium power reactors in the $\overline{\nu_{e}}$ energy region of 5-7MeV.

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