CC nu_mu 1 pi+ MINERvA跟踪器的生产

E. Granados
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引用次数: 0

摘要

为了减少未来中微子振荡实验中的不确定性,需要高精度的中微子-核子截面模型。出于这个原因,MINERvA实验测量了许多不同的专属中微子-核子截面。在1 GeV < W = 3 GeV)时代和ME时代(< E_nu > = 6 GeV),带电中微子与正电荷介子相互作用是主要的通道。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CC nu_mu 1 pi+ production at MINERvA tracker
In the aim to reduce the uncertainties in future neutrino oscillation experiments, it is necessary to have high accuracy in neutrino-nucleon cross section models. For this reason, the MINERvA experiment has measured many different exclusive neutrino-nucleon cross sections. Charged current neutrino Interactions with positive charged pion production is the predominant channel in the 1 GeV < W <1.5 GeV region. A large proportion of the 1-pion events in this region involve resonance production. For this reason, this W region is called the resonance region, and it is located between the quasielastic region and Deep Inelastic Scattering region. This talk will describe measurements of differential cross sections of 1-pion events in the scintillator tracker region of the MINERvA detector, including results from both the LE (< E_nu > = 3 GeV) era and the ME era (< E_nu > = 6 GeV).
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