论文标题

中微子振荡分析的光谱函数模型中的参数性CCQE不确定性

Parametrising CCQE uncertainties in the Spectral Function model for neutrino oscillation analyses

论文作者

Chakrani, Jaafar, Avanzini, Margherita Buizza, Dolan, Stephen

论文摘要

中微子振荡实验中的大量系统不确定性的很大一部分源于在描述中微子核相互作用时对细胞核进行建模的精确度。光谱函数(SF)模型具有壳模型图片中核内核的动量和去除能的分布,并且还解释了核子之间的短距离相关性。这些特征就更常用的基于费米气体的模型提供了重大改进。电子散射实验提供了对核结构的精确探测,并已用于构建和验证SF模型。因此,SF是长基线中微子实验的有趣参考模型。 基于电子散射数据的约束,我们开发了一组参数,这些参数可以改变核壳的占用率和每个壳内核子动量的分布。此外,最终状态相互作用对流浪汉和核子运动学的影响,短期相关性的贡献以及Pauli阻塞的效果也可以修改。在本文档中,我们将首先描述这些参数的开发,部分基于与电子散射数据的比较。然后,我们将这些参数的拟合与可用的T2K和Miner $ν$横截面数据显示,并讨论如何使用它们来约束与中微子振荡分析中与SF模型相关的系统不确定性。

A substantial fraction of systematic uncertainties in neutrino oscillation experiments stems from the lack of precision in modeling the nucleus when describing the neutrino-nucleus interactions. The Spectral Function (SF) model features a distribution of momenta and removal energies of nucleons inside the nucleus within the shell-model picture, and also accounts for short-range correlations between nucleons. These characteristics offer significant improvements with respect to the more commonly used Fermi gas-based models. Electron scattering experiments offer a precise probe of the structure of the nucleus and have been used to both construct and validate the SF model. SF is thus an interesting reference model for long baseline neutrino experiments. Based on constraints from electron scattering data, we develop a set of parameters that can alter the occupancy of the nuclear shells and the distribution of the nucleon momentum within each shell. In addition, the impact of final-state interactions on the outgoing lepton and nucleon kinematics, the contribution of short-range correlations and the effect of Pauli blocking can also be modified. In this document, we will first describe the development of these parameters, partially based on a comparison with electron scattering data. We then show fits of these parameters to available T2K and MINER$ν$A cross-section data and discuss how they can be used to constrain the systematic uncertainties related to the SF model in neutrino oscillation analyses.

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