论文标题

使用Genie和Nuwro事件生成器在$^{40} $ ar上$ nuwro的pion生产研究

Study of pion production in $ν_μ$ interactions on $^{40}$Ar in DUNE using GENIE and NuWro event generators

论文作者

Sharma, H. R., Nagu, Srishti, Singh, Jyotsna, Singh, R. B., Potukuchi, Baba

论文摘要

对所有中微子实验中的数据分析,对PION产生和最终状态相互作用(FSI)的影响很重要。对于正在运行当前中微子实验的能量,通过共振产生过程对PION产生产生了重要贡献。生产后,如果将乳子吸收在核物质中,则该事件可能与准弹性散射过程无法区分,并充当背景。该背景的估计对于振荡实验至关重要,并且需要良好的理论模型,以便在初级顶点和FSI之后产生Pion。由于FSI,最终状态pions的数量与主顶点产生的数量显着不同。由于中微子探测器只能观察到最终状态颗粒,因此FSI掩盖了对主要顶点产生的颗粒的正确信息。为了克服这一困难,需要对FSI有良好的了解,这可以由蒙特卡洛(MC)中微子事件发生器中的理论模型提供。在这项工作中,我们将为两个不同的MC发电机(Genie和Nuwro)提供模拟事件,用于在$^{40} $ ar target上的$ν_μ$ cc相互作用中生产的Pion生产。介绍了发电机使用的理论模型的简要概述。 PION产生的结果以表格的形式显示,显示了100 $ \%$检测器分辨率和动能探测器阈值阈值的占用率和最终状态斜拓扑的占用。我们观察到,与Genie相比,NUWRO(V-1902.2)对吸收和电荷交换过程的透明度(响应率较低)(V-3.00.06)比核内运输过程中产生的更可能更可能被吸收,并且需要改善检测器技术以提高检测器阈值以获得更好的结果。

The study of pion production and the effects of final state interactions (FSI) are important for data analysis in all neutrino experiments. For energies at which current neutrino experiments are being operated, a significant contribution to pion production is made by resonance production process. After its production, if a pion is absorbed in the nuclear matter, the event may become indistinguishable from quasi-elastic scattering process and acts as a background. The estimation of this background is very essential for oscillation experiments and requires good theoretical models for both pion production at primary vertex and after FSI. Due to FSI, the number of final state pions is significantly different from the number produced at primary vertex. As the neutrino detectors can observe only the final state particles, the correct information about the particles produced at the primary vertex is overshadowed by FSI. To overcome this difficulty, a good knowledge of FSI is required which may be provided by theoretical models incorporated in Monte Carlo (MC) neutrino event generators. In this work, we will present simulated events for two different MC generators - GENIE and NuWro, for pion production in $ν_μ$CC interactions on $^{40}$Ar target in DUNE experimental set up. A brief outline of theoretical models used by generators is presented. The results of pion production are presented in the form of tables showing the occupancy of primary and final state pion topologies with 100$\%$ detector resolution and with kinetic energy detector threshold cuts. We observe that NuWro (v-19.02.2) is more transparent (less responsive) to absorption and charge exchange processes as compared to GENIE (v-3.00.06), pions are more likely to be absorbed than created during their intranuclear transport and there is need to improve detector technology to improve the detector threshold for better results.

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