Measurement of the Reactor Antineutrino Flux and Spectrum at Daya Bay
Daya Bay Collaboration: F. P. An, A. B. Balantekin, H. R. Band, M., Bishai, S. Blyth, I. Butorov, D. Cao, G. F. Cao, J. Cao, W. R. Cen, Y. L., Chan, J. F. Chang, L. C. Chang, Y. Chang, H. S. Chen, Q. Y. Chen, S. M. Chen,, Y. X. Chen, Y. Chen, J. H. Cheng, J. Cheng, Y. P. Cheng

TL;DR
This paper reports a precise measurement of reactor antineutrino flux and spectrum at Daya Bay, revealing deviations from theoretical models and providing valuable data for neutrino physics research.
Contribution
It provides the first high-statistics measurement of reactor antineutrino flux and spectrum at multiple baselines, highlighting discrepancies with existing spectral predictions.
Findings
Measured IBD yield consistent with previous experiments
Observed spectrum deviations exceeding 2σ from models
Extracted model-independent antineutrino spectrum
Abstract
This Letter reports a measurement of the flux and energy spectrum of electron antineutrinos from six 2.9~GW nuclear reactors with six detectors deployed in two near (effective baselines 512~m and 561~m) and one far (1,579~m) underground experimental halls in the Daya Bay experiment. Using 217 days of data, 296,721 and 41,589 inverse beta decay (IBD) candidates were detected in the near and far halls, respectively. The measured IBD yield is (1.55 0.04) 10~cm/GW/day or (5.92 0.14) 10~cm/fission. This flux measurement is consistent with previous short-baseline reactor antineutrino experiments and is () relative to the flux predicted with the Huber+Mueller (ILL+Vogel) fissile antineutrino model. The measured IBD positron energy spectrum deviates from both spectral predictions by more than 2…
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