论文标题

研究相干弹性中微子核散射的新方法

Novel approach for the study of coherent elastic neutrino-nucleus scattering

论文作者

Galindo-Uribarri, A., Miranda, O. G., Garcia, G. Sanchez

论文摘要

我们提出使用同位素高度富集的检测器来精确研究相干 - 弹性中微子核散射(CEVNS)。 CEVNS是在CSI中首次测量的,最近用液体氩检测器确认。预计几个新的实验设置将以越来越高的精度来衡量此过程。以GE探测器为示例,我们证明了不同同位素的组合是使用CEVN,测试标准模型预测和探测新物理学方案进行精确中微子物理学的绝佳选择。基于这个新想法的实验可以使同时差异的差异CEVNS测量与不同同位素组成的检测器。可观察到的特定组合可用于取消系统错误。尽管可以使用许多应用程序,但我们用三个示例说明了这个想法:测试由理论模型预测的中子数量($ n $)的主要二次依赖;限制平均中子根均方根(RMS)半径;并测试弱混合角度和对新物理学的敏感性。在所有三种情况下,我们发现该方法提供的额外敏感性将有可能允许使用CEVN进行高精度的稳健测量,尤其是解决新物理场景中出现的特征性脱生。

We propose the use of isotopically highly enriched detectors for the precise study of coherent-elastic neutrino-nucleus scattering (CEvNS). CEvNS has been measured for the first time in CsI and recently confirmed with a liquid argon detector. It is expected that several new experimental setups will measure this process with increasing accuracy. Taking Ge detectors as a working example, we demonstrate that a combination of different isotopes is an excellent option to do precision neutrino physics with CEvNS, test Standard Model predictions, and probe new physics scenarios. Experiments based on this new idea can make simultaneous differential CEvNS measurements with detectors of different isotopic composition. Particular combination of observables could be used to cancel systematic errors. While many applications are possible, we illustrate the idea with three examples: testing the dominant quadratic dependence on the number of neutrons, $N$, that is predicted by the theoretical models; constraining the average neutron root mean square (rms) radius; and testing the weak mixing angle and the sensitivity to new physics. In all three cases we find that the extra sensitivity provided by this method will potentially allow high-precision robust measurements with CEvNS and particularly, will resolve the characteristic degeneracies appearing in new physics scenarios.

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