论文标题
Dresden-II和相干中微子散射数据对中微子电磁特性和Electroweak Physics的影响
Impact of the Dresden-II and COHERENT neutrino scattering data on neutrino electromagnetic properties and electroweak physics
论文作者
论文摘要
自2017年首次观察到Oak Ridge国家实验室的相干实验,相干实验利用了剥离中子源,相干性弹性中微子核散射(CE $ν$ ns)是研究关键的Electroweak物理参数和中微子特性的强大工具。鉴于德累斯顿-II反应堆在锗探测器上散射出的抗神经酮的最新检测,我们重新审视了迄今为止的中微子磁矩,电荷半径和Millicharges以及弱混合角的限制。为此,我们还包括弹性中性电子散射的贡献,在标准模型理论之外的某些人中,其效果变得不可忽略。通过使用不同的假设用于锗淬灭因子和反应器抗逆磁通量,我们在Dresden-II反应堆实验的低能量尺度下衡量了弱混合角度,并且得益于最新的Cesium iodide和Argon数据的组合分析,由Coohent Collegation propertion propertion propertions for Supfortion for noffimention foreffornion for norprino forpeftime foreffornion forpeftiment fordiftions fordrino fordrino。有趣的是,我们能够对电子中微子电荷半径设置新的最佳上限,并在中微子电荷和磁矩上显着改善其他CE $ν$ NS相关的极限。
Coherent elastic neutrino-nucleus scattering (CE$ν$NS) represents a powerful tool to investigate key electroweak physics parameters and neutrino properties since its first observation in 2017 by the COHERENT experiment exploiting the spallation neutron source at Oak Ridge National Laboratory. In light of the recent detection of such a process with antineutrinos produced by the Dresden-II reactor scattering off a germanium detector, we revisit the limits so far set on the neutrino magnetic moments, charge radii and millicharges as well as on the weak mixing angle. In order to do so, we also include the contribution of elastic neutrino-electron scattering, whose effect becomes non negligible in some beyond the Standard Model theories. By using different hypotheses for the germanium quenching factor and the reactor antineutrino flux, we provide a measurement of the weak mixing angle at the low-energy scale of the Dresden-II reactor experiment and, thanks to a combined analysis with the latest cesium iodide and argon data set released by the COHERENT Collaboration, we deliver updated limits for the neutrino electromagnetic properties. Interestingly, we are able to set a new best upper limit on the electron neutrino charge radius and significantly improve the other CE$ν$NS-related limits on the neutrino electric charge and magnetic moment.