论文标题

通过HFIR的前景实验,改进了短碱中微子振荡搜索和能量光谱测量

Improved Short-Baseline Neutrino Oscillation Search and Energy Spectrum Measurement with the PROSPECT Experiment at HFIR

论文作者

Andriamirado, M., Balantekin, A. B., Band, H. R., Bass, C. D., Bergeron, D. E., Berish, D., Bowden, N. S., Brodsky, J. P., Bryan, C. D., Classen, T., Conant, A. J., Deichert, G., Diwan, M. V., Dolinski, M. J., Erickson, A., Foust, B. T., Gaison, J. K., Galindo-Uribarri, A., Gilbert, C. E., Goddard, B. W., Hackett, B. T., Hans, S., Hansell, A. B., Heeger, K. M., Heffron, B., Jaffe, D. E., Ji, X., Jones, D. C., Kyzylova, O., Lane, C. E., Langford, T. J., LaRosa, J., Littlejohn, B. R., Lu, X., Maricic, J., Mendenhall, M. P., Meyer, A. M., Milincic, R., Mitchell, I., Mueller, P. E., Mumm, H. P., Napolitano, J., Nave, C., Neilson, R., Nikkel, J. A., Norcini, D., Nour, S., Palomino, J. L., Pushin, D. A., Qian, X., Romero-Romero, E., Rosero, R., Surukuchi, P. T., Tyra, M. A., Varner, R. L., Venegas-Vargas, D., Weatherly, P. B., White, C., Wilhelmi, J., Woolverton, A., Yeh, M., Zhang, A., Zhang, C., Zhang, X.

论文摘要

我们介绍了有关在高度富集的高通量同位素反应器(HFIR)在橡树岭国家实验室(Oak Ridge National Laboratory)的前景实验产生的有关无菌中微子振荡和U-235的抗毒素能谱测量结果的详细报告。在96个日历日期,在距85 MW HFIR核心中心7.9 m的平均基线距离获取的数据日内,前景检测器已经观察到在U-235裂变产物的β衰减中产生的抗神经毒素相互作用超过50,000多个。通过比较6.7至9.2米之间的十个反应器检测器基线的检测到的能量光谱,已经设定了抗神经纤维对光无菌中微子的新限制。测量的基线之间的能量光谱差异表明,抗肿瘤对无菌中微子振荡没有统计学上的显着指示,并不利于2.5 $σ$置信度的反应堆抗神经异常最佳拟合点。报道的U-235抗抗质频谱测量值与通过测得的U-235β频谱产生的能量谱模型非常吻合,其$χ^2 $/DOF为31/31。潜在客户能够以2.4 $σ$置信度的水平不满意,即U-235抗逆性抗肿瘤完全负责模型与在商业反应器核心上获得的数据之间的频谱差异。相对于未观察到的偏差,优先于2.2 $σ$置信水平,优先选择了与商业核心实验观察到的数据模型偏差。

We present a detailed report on sterile neutrino oscillation and U-235 antineutrino energy spectrum measurement results from the PROSPECT experiment at the highly enriched High Flux Isotope Reactor (HFIR) at Oak Ridge National Laboratory. In 96 calendar days of data taken at an average baseline distance of 7.9 m from the center of the 85 MW HFIR core, the PROSPECT detector has observed more than 50,000 interactions of antineutrinos produced in beta decays of U-235 fission products. New limits on the oscillation of antineutrinos to light sterile neutrinos have been set by comparing the detected energy spectra of ten reactor-detector baselines between 6.7 and 9.2 meters. Measured differences in energy spectra between baselines show no statistically significant indication of antineutrinos to sterile neutrino oscillation and disfavor the Reactor Antineutrino Anomaly best-fit point at the 2.5$σ$ confidence level. The reported U-235 antineutrino energy spectrum measurement shows excellent agreement with energy spectrum models generated via conversion of the measured U-235 beta spectrum, with a $χ^2$/DOF of 31/31. PROSPECT is able to disfavor at 2.4$σ$ confidence level the hypothesis that U-235 antineutrinos are solely responsible for spectrum discrepancies between model and data obtained at commercial reactor cores. A data-model deviation in PROSPECT similar to that observed by commercial core experiments is preferred with respect to no observed deviation, at a 2.2$σ$ confidence level.

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