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Electro weak single-pion production off the nucleon: From threshold to high invariant masses

机译:核心的电弱单齿生产:从阈值到高不变质量

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摘要

Neutrino-induced single-pion production (SPP) provides an important contribution to neutrino-nucleus interactions, ranging from intermediate to high energies. There exists a good number of low-energy models in the literature to describe the neutrino production of pions in the region around the Delta resonance. Those models consider only lowest-order interaction terms and, therefore, fail in the high-energy region (pion-nucleon invariant masses, W approx> 2 GeV). Our goal is to develop a model for electroweak SPP off the nucleon, which is applicable to the entire energy range of interest for present and future accelerator-based neutrino-oscillation experiments. We start with the low-energy model of [E. Hernandez, J. Nieves, and M. Valverde, Phys. Rev. D 76, 033005 (2007).], which includes resonant contributions and background terms derived from the pion-nucleon Lagrangian of chiral- perturbation theory [S. Scherer and M. R. Schindler, A Primer for Chiral Perturbation Theory (Springer, Berlin, 2012), p. 1.]. Then, from the background contributions, we build a high-energy model using a Regge approach. The low- and high-energy models are combined, in a phenomenological way, into a hybrid model. The hybrid model is identical to the low-energy model in the low-W region, but, for W approx> 2 GeV, it implements the desired high- energy behavior dictated by Regge theory. We have tested the high-energy model by comparing with one-pion production data from electron and neutrino reactions. The hybrid model is compared with electron-proton scattering data, with neutrino SPP data and with the predictions of the NuWro Monte Carlo event generator. Our model is able to provide satisfactory predictions of the electroweak one-pion production cross section from pion threshold to high W. Further investigation and more data are needed to better understand the mechanisms playing a role in the electroweak SPP process in the high-W region, in particular, those involving the axial current contributions.
机译:中微子诱导的单沟型制作(SPP)为中核 - 核相互作用提供了重要贡献,从中间体到高能量。文献中存在良好数量的低能量模型,以描述在达达共振周围的区域中的细胞聚物的中性产生。这些模型仅考虑最低阶的相互作用术语,因此,在高能区(磁核不变质量,大约> 2 GEV)中失败。我们的目标是开发核心Electweak SPP的模型,这适用于当前和基于加速器的中微子振荡实验的整个能量范围。我们从[E.的低能量模型Hernandez,J. Nieves和M. Valverde,Phy。 Rev. D 76,033005(2007)。],包括衍生自手感理论的脊髓利川的谐振贡献和背景术语[S. Scherer和M. R. Schindler,手性扰动理论(Springer,Berlin,2012),p。 1.]。然后,从背景贡献中,我们使用Regge方法构建高能模型。低能量模型以现象学方式组合到混合模型中。混合模型与低W区域中的低能量模型相同,但对于大约> 2 GEV,它实现了由Regge理论决定的所需的高能量行为。通过与电子和中微子反应的单沟生产数据进行比较,我们已经测试了高能模型。将混合模型与电子 - 质子散射数据进行比较,中Nure SPP数据和Nuwro Monte Carlo事件发生器的预测。我们的模型能够提供从距离阈值到高W的令人满意的预测。需要进一步调查和更多数据来更好地理解在高W地区的Electweak SPP过程中发挥作用的机制特别是那些涉及轴向电流贡献的那些。

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  • 来源
    《Physical Review D》 |2017年第12期|113007.1-113007.28|共28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 Wrocław Plac Maxa Borna 9 50-204 Wrocław Poland;

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

    Center for Neutrino Physics Virginia Tech Blacksburg Virginia 24061 USA;

    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;

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