论文标题

深度非弹性$ν_τ/\barν_τ-$ nucleon散射中的非扰动和高阶扰动作用

Nonperturbative and higher order perturbative effects in deep inelastic $ν_τ/\barν_τ-$nucleon scattering

论文作者

Ansari, V., Athar, M. Sajjad, Haider, H., Singh, S. K., Zaidi, F.

论文摘要

对所有自由核子结构函数的非扰动和高阶扰动校正的影响($ f_ {in}(x,q^2​​); i = 1-5 $)在$ n nucleon上的$ν_τ/{\barν}_τ$的dis中的影响。 根据Kretzer等人的作品,纳入了目标质量校正(TMC)和较高的扭曲(HT)效应。和Dasgupta等人分别。 通过使用Parton分布函数(PDFS)的MMHT 2014参数化进行了细胞核结构函数的评估。计算是按照近二(NLO)顺序进行的。 这些核子结构函数(SF)用于进一步计算截面截面,包括$τ$ -Lepton质量引起的运动学校正。 由于包含Lepton质量,两个附加结构功能$ f_ {4n}(x,q^2​​)$和$ f_ {5n}(x,q^2​​)$变得不可忽略。 提出了核子结构功能,差分和总散射横截面的结果。这项工作中考虑的各种效果在$ x $和$ q^2 $的不同区域有效,并且在能源区域非常重要 $ e_ {ν_τ/{\barν}_τ} <15 $ gev。对我们的结果的比较研究与现有 导致十字架的文献 部分是在沙丘,船,DSTAU的感兴趣的能源区域中进行的。 并提议在不久的将来进行HyperK实验。

The effect of nonperturbative and higher order perturbative corrections to all the free nucleon structure functions ($F_{iN}(x,Q^2); i=1-5$) in the DIS of $ν_τ/{\barν}_τ$ on nucleon is studied. The target mass correction (TMC) and higher twist (HT) effects are incorporated following the works of Kretzer et al. and Dasgupta et al., respectively. The evaluation of the nucleon structure functions has been performed by using the MMHT 2014 parameterization of the parton distribution functions (PDFs). The calculations have been performed at the next-to-leading(NLO) order. These nucleon structure functions (SF) are used to calculate the DIS cross section by further including the kinematical corrections due to $τ$-lepton mass. Due to the inclusion of lepton mass two additional structure functions $F_{4N}(x,Q^2)$ and $F_{5N}(x,Q^2)$ become non-negligible. The results for the nucleon structure functions, differential and total scattering cross sections are presented. The various effects considered in this work are effective in the different regions of $x$ and $Q^2$, and quite important in the energy region of $E_{ν_τ/{\barν}_τ} < 15$ GeV. A comparative study of our results with the existing results in the literature for the cross sections is made in the energy region of interest for the DUNE, SHiP, DsTau and HyperK experiments proposed to be done in the near future.

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