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首页> 外文期刊>Physical review, D >Modeling neutrino-induced charged pion production on water at T2K kinematics
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Modeling neutrino-induced charged pion production on water at T2K kinematics

机译:T2K运动学在水中建模中子诱导的带电型材生产

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摘要

Pion production is a significant component of the signal in accelerator-based neutrino experiments. Over the last years, the MiniBooNE, T2K, and MINERvA collaborations have reported a substantial amount of data on (anti)neutrino-induced pion production on the nucleus. However, a comprehensive and consistent description of the whole data set is still missing. We aim at improving the current understanding of neutrino-induced pion production on the nucleus. To this end, the comparison of experimental data with theoretical predictions, preferably based on microscopic models, is essential to disentangle the different reaction mechanisms involved in the process. To describe single-pion production, we use a hybrid model that combines low- and a high-energy approaches. The low-energy model contains resonances and background terms. At high invariant masses, a high-energy model based on a Regge approach is employed. The model is implemented in the nucleus using the relativistic plane wave impulse approximation (RPWIA).We present a comparison of the hybrid-RPWIA and low-energy model with the recent neutrinoinduced charged-current 1π~+-production cross section on water reported by T2K. In order to judge the impact of final-state interactions (FSI), we confront our results with those of the NuWro Monte Carlo generator. The hybrid-RPWIA model and NuWro results compare favorably to the data, albeit that FSI are not included in the former. The need of a high-energy model at T2K kinematics is made clear. These results complement our previous work [Phys. Rev. D 97, 013004 (2018)], in which we compared the models to the MINERvA and MiniBooNE 1π~+ data. The hybrid-RPWIA model tends to overpredict both the T2K and MINERvA data in kinematic regions where the largest suppression due to FSI is expected and agrees remarkably well with the data in other kinematic regions. On the contrary, the MiniBooNE data are underpredicted over the whole kinematic range.
机译:PION生产是基于加速器的中微子实验中的信号的重要组成部分。在过去的几年中,Miniboone,T2K和Minerva合作报告了大量的(抗)中性诱导的细胞核诱导的型材诱导的数据。但是,仍然缺少整个数据集的全面和一致描述。我们旨在改善目前对细胞核诱导的中微子诱导的膜层的理解。为此,具有理论上预测的实验数据的比较,优选基于微观模型,对于解散该过程中涉及的不同反应机制是必不可少的。为了描述单型型材生产,我们使用结合低能量和高能量方法的混合模型。低能量模型包含共振和背景术语。在高不变质量下,采用基于REGGE方法的高能模型。该模型使用相对论平面波脉冲近似(RPWIA)在核中实现.WE与近期中微子诱导的充电电流1π〜+ - 生产的横截面呈现了杂交 - rpwia和低能量模型的比较T2K。为了判断最终国家互动的影响(FSI),我们将我们的结果与Nuwro Monte Carlo发电机的结果相结合。 Hybrid-RPWIA模型和Nuwro结果对数据进行了比较,尽管FSI不包括在前者。在T2K运动学中需要高能模型的需要清晰。这些结果补充了我们以前的工作[phy。 Rev. D 97,013004(2018)],我们将模型与Minerva和Miniboone1π〜+数据进行比较。 Hybrid-RPWIA模型倾向于过度估计在运动区域中的T2K和MINERVA数据,其中预期FSI导致的最大抑制,并且与其他运动区中的数据相当得非常好。相反,小纤维数据在整个运动范围内都处于绝望。

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  • 来源
    《Physical review, D》 |2018年第1期|共8页
  • 作者单位

    Department of Physics and Astronomy Ghent University Proeftuinstraat 86 B-9000 Gent Belgium;

    Department of Physics and Astronomy Ghent University Proeftuinstraat 86 B-9000 Gent Belgium;

    Department of Physics and Astronomy Ghent University Proeftuinstraat 86 B-9000 Gent Belgium;

    Institute of Theoretical Physics University of Wroc?aw Plac Maxa Borna 9 50-204 Wroc?aw Poland;

    Department of Physics and Astronomy Ghent University Proeftuinstraat 86 B-9000 Gent Belgium;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 粒子物理学;场论;
  • 关键词

    Modeling; neutrino-induced; charged;

    机译:建模;中微子诱导;充电;

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