论文标题

235U裂变的立体中微子光谱拒绝无菌中微子假设

Stereo neutrino spectrum of 235U fission rejects sterile neutrino hypothesis

论文作者

Almazán, H., Bernard, L., Blanchet, A., Bonhomme, A., Buck, C., Chalil, A., Sanchez, P. del Amo, Atmani, I. El, Labit, L., Lhuillier, J. Lamblin A. Letourneau D., Licciardi, M., Lindner, M., Materna, T., Pessard, H., Réal, J. -S., Ricol, J. -S., Roca, C., Rogly, R., Salagnac, T., Savu, V., Schoppmann, S., Soldner, T., Stutz, A., Vialat, M.

论文摘要

过去中微子测量值的异常导致发现这些颗粒在传播时的三种口味之间的质量非零质量和振荡。在2010年,在核反应堆发出的抗肿瘤光谱中观察到的类似异常触发了一种补充中微子状态的假设,即无菌性中微子状态,即不通过弱相互作用进行相互作用。立体声实验旨在研究这种科学案例,该案例可能会扩展粒子物理的标准模型。在这里,我们根据我们的完整数据提供了一项完整的研究,并具有显着提高灵敏度。立体声安装在ILL(Institut Laue Langevin Institut)研究反应堆上,已准确测量了与235U裂变相关的抗肿瘤能量光谱。该测量确认了异常,而由于立体声检测器的分割及其与核心的平均距离非常短(10〜M),相同的数据拒绝了光无菌中微子的假设。这种直接测量的抗毒抗能量光谱表明,用于预测的核实验数据中的偏见是异常的起源。我们的结果支持标准模型的中微子含量,并为235U抗神经抗性能谱建立了新的参考。我们预计,这一结果将允许对中微子的基本特性进行更精细的测试,还可以基于反应堆物理学的基准模型和感兴趣的核数据,并观察天体物理或地球性中性菌。

Anomalies in past neutrino measurements have led to the discovery that these particles have non-zero mass and oscillate between their three flavors when they propagate. In the 2010's, similar anomalies observed in the antineutrino spectra emitted by nuclear reactors have triggered the hypothesis of the existence of a supplementary neutrino state that would be sterile i.e. not interacting via the weak interaction. The STEREO experiment was designed to study this scientific case that would potentially extend the Standard Model of Particle Physics. Here we present a complete study based on our full set of data with significantly improved sensitivity. Installed at the ILL (Institut Laue Langevin) research reactor, STEREO has accurately measured the antineutrino energy spectrum associated to the fission of 235U. This measurement confirms the anomalies whereas, thanks to the segmentation of the STEREO detector and its very short mean distance to the core (10~m), the same data reject the hypothesis of a light sterile neutrino. Such a direct measurement of the antineutrino energy spectrum suggests instead that biases in the nuclear experimental data used for the predictions are at the origin of the anomalies. Our result supports the neutrino content of the Standard Model and establishes a new reference for the 235U antineutrino energy spectrum. We anticipate that this result will allow to progress towards finer tests of the fundamental properties of neutrinos but also to benchmark models and nuclear data of interest for reactor physics and for observations of astrophysical or geo-neutrinos.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源