论文标题

相干弹性中微子核散射:EFT分析和核反应

Coherent elastic neutrino-nucleus scattering: EFT analysis and nuclear responses

论文作者

Hoferichter, Martin, Menéndez, Javier, Schwenk, Achim

论文摘要

相干弹性中微子核散射(CE $ν$ ns)的横截面取决于目标核对外部电流的响应,这是通过交换$ z $ boson介导的标准模型(SM)。这通常将其归为一个称为核的弱形值的对象。在这里,我们提供了使用大规模核壳模型计算的此型号的结果,以与当前CE $ν$ NS实验相关的各种核,包括Cesium,Iodine,Argon,Fluorine,Fluorine,Sodium,Sodium,encodium和Xenon。此外,我们还提供了捕获横截面的轴向矢量部分所需的响应,该部分与中子的数量不一致,但可能与nonzero旋转的目标核上CE $ν$ ns的SM预测相关。然后,我们概括了形式主义,允许超越SM的贡献。特别是,我们强调的是,在这种情况下,即使对于向量和轴向向量操作员,标准的弱型物体不再适用,但需要被基本核结构因子的适当组合所取代。我们为向量,轴向矢量提供相应的表达式,以及(伪)标量,张量和偶极有效的算子,包括手性有效田间理论所预测的两体电流效应。最后,根据我们对轴向矢量反应的改进处理,我们更新了核散射的自旋依赖性结构因子。

The cross section for coherent elastic neutrino-nucleus scattering (CE$ν$NS) depends on the response of the target nucleus to the external current, in the Standard Model (SM) mediated by the exchange of a $Z$ boson. This is typically subsumed into an object called the weak form factor of the nucleus. Here, we provide results for this form factor calculated using the large-scale nuclear shell model for a wide range of nuclei of relevance for current CE$ν$NS experiments, including cesium, iodine, argon, fluorine, sodium, germanium, and xenon. In addition, we provide the responses needed to capture the axial-vector part of the cross section, which does not scale coherently with the number of neutrons, but may become relevant for the SM prediction of CE$ν$NS on target nuclei with nonzero spin. We then generalize the formalism allowing for contributions beyond the SM. In particular, we stress that in this case, even for vector and axial-vector operators, the standard weak form factor does not apply anymore, but needs to be replaced by the appropriate combination of the underlying nuclear structure factors. We provide the corresponding expressions for vector, axial-vector, but also (pseudo-)scalar, tensor, and dipole effective operators, including two-body-current effects as predicted from chiral effective field theory. Finally, we update the spin-dependent structure factors for dark matter scattering off nuclei according to our improved treatment of the axial-vector responses.

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