论文标题
Dresden-II反应堆数据的后果弱混合角度和新物理
Consequences of the Dresden-II reactor data for the weak mixing angle and new physics
论文作者
论文摘要
Dresden-II反应堆实验最近报告了使用锗探测器观察一致的弹性中微子核散射的暗示性证据。鉴于低后坐力的能量阈值,对于低能量确定弱混合角度以及对导致低动量转移时光谱扭曲的新物理学的研究特别有趣。我们使用两个假设淬灭因子,研究数据对:(i)以$ \ sim 10 \,\ text {mev} $,(ii)Neutrino概括性相互作用的弱化量表的弱混合角,(III)无菌中性中心二酮门户。弱混合角的结果表明对淬灭因子的选择有很强的依赖性。尽管仍然存在较大的不确定性,但Dresden-II数据首次使用相干的弹性中微子核核散射数据首次以这种规模确定$ \ sin^2θ_w$。紧密的上限放置在光矢量,标量和张量调解器场景上。反应堆抗中性通量和电离能阈值所隐含的运动限制使无菌中微子偶极子门户网站可产生以无菌中微子质量为$ \ sim 8 \,$ MEV的散落事件。在这种情况下,我们发现极限也对淬火因子的选择敏感,但是在这两种情况下,与从Xenon1t数据中得出的数据具有竞争力,并且在同一无菌中微子质量范围内具有相干数据的更严格性。
The Dresden-II reactor experiment has recently reported a suggestive evidence for the observation of coherent elastic neutrino-nucleus scattering, using a germanium detector. Given the low recoil energy threshold, these data are particularly interesting for a low-energy determination of the weak mixing angle and for the study of new physics leading to spectral distortions at low momentum transfer. Using two hypotheses for the quenching factor, we study the impact of the data on: (i) The weak mixing angle at a renormalization scale of $\sim 10\,\text{MeV}$, (ii) neutrino generalized interactions with light mediators, (iii) the sterile neutrino dipole portal. The results for the weak mixing angle show a strong dependence on the quenching factor choice. Although still with large uncertainties, the Dresden-II data provide for the first time a determination of $\sin^2θ_W$ at such scale using coherent elastic neutrino-nucleus scattering data. Tight upper limits are placed on the light vector, scalar and tensor mediator scenarios. Kinematic constraints implied by the reactor anti-neutrino flux and the ionization energy threshold allow the sterile neutrino dipole portal to produce up-scattering events with sterile neutrino masses up to $\sim 8\,$MeV. In this context, we find that limits are also sensitive to the quenching factor choice, but in both cases competitive with those derived from XENON1T data and more stringent that those derived with COHERENT data, in the same sterile neutrino mass range.