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Final Measurement of the ^{235}U Antineutrino Energy Spectrum with the PROSPECT-I Detector at HFIR.

Authors :
Andriamirado M
Balantekin AB
Bass CD
Bergeron DE
Bernard EP
Bowden NS
Bryan CD
Carr R
Classen T
Conant AJ
Deichert G
Delgado A
Diwan MV
Dolinski MJ
Erickson A
Foust BT
Gaison JK
Galindo-Uribari A
Gilbert CE
Gokhale S
Grant C
Hans S
Hansell AB
Heeger KM
Heffron B
Jaffe DE
Jayakumar S
Ji X
Jones DC
Koblanski J
Kunkle P
Kyzylova O
LaBelle D
Lane CE
Langford TJ
LaRosa J
Littlejohn BR
Lu X
Maricic J
Mendenhall MP
Meyer AM
Milincic R
Mueller PE
Mumm HP
Napolitano J
Neilson R
Nikkel JA
Nour S
Palomino Gallo JL
Pushin DA
Qian X
Roca C
Rosero R
Searles M
Surukuchi PT
Sutanto F
Tyra MA
Venegas-Vargas D
Weatherly PB
Wilhelmi J
Woolverton A
Yeh M
Zhang C
Zhang X
Source :
Physical review letters [Phys Rev Lett] 2023 Jul 14; Vol. 131 (2), pp. 021802.
Publication Year :
2023

Abstract

This Letter reports one of the most precise measurements to date of the antineutrino spectrum from a purely ^{235}U-fueled reactor, made with the final dataset from the PROSPECT-I detector at the High Flux Isotope Reactor. By extracting information from previously unused detector segments, this analysis effectively doubles the statistics of the previous PROSPECT measurement. The reconstructed energy spectrum is unfolded into antineutrino energy and compared with both the Huber-Mueller model and a spectrum from a commercial reactor burning multiple fuel isotopes. A local excess over the model is observed in the 5-7 MeV energy region. Comparison of the PROSPECT results with those from commercial reactors provides new constraints on the origin of this excess, disfavoring at 2.0 and 3.7 standard deviations the hypotheses that antineutrinos from ^{235}U are solely responsible and noncontributors to the excess observed at commercial reactors, respectively.

Details

Language :
English
ISSN :
1079-7114
Volume :
131
Issue :
2
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
37505961
Full Text :
https://doi.org/10.1103/PhysRevLett.131.021802