论文标题
中微子数据数据及其对核部分分布功能的影响
Compatibility of Neutrino DIS Data and Its Impact on Nuclear Parton Distribution Functions
论文作者
论文摘要
在核部分分布函数(NPDF)的全球分析中,中微子深弹性散射(DIS)数据被认为表现出与带电的lepton dis的数据的紧张关系。使用NCTEQ框架,我们在内部和我们最近的NPDF分析NCTEQ15WZSIH中使用的数据集研究了这些可能的紧张局面。我们考虑了使用CJ15分析的Deuteron结构函数计算$ F_2^D $的核效应。由此产生的NPDF拟合,NCTEQ15WZSIHDEUT是我们与包容性中微子dis和Charm Dimuon生产数据进行比较的基础。使用$χ^2 $假设检验,我们证实了与这些数据的紧张局势的证据,并研究了质子PDF基线的影响以及数据相关性和归一化不确定性的处理。我们确定了产生紧张局势的实验数据和运动区域,并提出了几种可能如何使用中微子数据进行一致的全局分析。我们表明,使用Kinematic Cut以低$ x $($ x> 0.1 $)的削减可以缓解张力,还可以调查通过使用不相关的系统错误来管理紧张局势的可能性。最后,我们提出了一种不同的方法,以识别中微子数据的一部分,该数据可导致一致的全局分析,而无需任何其他削减。了解中微子和带电的 - 莱普顿数据之间的这些紧张局势不仅对于在核和质子PDF的全球分析中的更好的风味分离也很重要,而且对于中微子物理学以及对标准模型以外的物理学的搜索也很重要。
In global analyses of nuclear parton distribution functions (nPDFs), neutrino deep-inelastic scattering (DIS) data have been argued to exhibit tensions with the data from charged-lepton DIS. Using the nCTEQ framework, we investigate these possible tensions both internally and with the data sets used in our recent nPDF analysis nCTEQ15WZSIH. We take into account nuclear effects in the calculation of the deuteron structure function $F_2^D$ using the CJ15 analysis. The resulting nPDF fit, nCTEQ15WZSIHdeut, serves as the basis for our comparison with inclusive neutrino DIS and charm dimuon production data. Using $χ^2$ hypothesis testing, we confirm evidence of tensions with these data and study the impact of the proton PDF baseline as well as the treatment of data correlation and normalization uncertainties. We identify the experimental data and kinematic regions that generate the tensions and present several possible approaches how a consistent global analysis with neutrino data can be performed. We show that the tension can be relieved using a kinematic cut at low $x$ ($x>0.1$) and also investigate a possibility of managing the tensions by using uncorrelated systematic errors. Finally, we present a different approach identifying a subset of neutrino data which leads to a consistent global analysis without any additional cuts. Understanding these tensions between the neutrino and charged-lepton DIS data is important not only for a better flavor separation in global analyses of nuclear and proton PDFs, but also for neutrino physics and for searches for physics beyond the Standard Model.