论文标题
同时提取带有质量校正的光电荷的碎片功能
Simultaneous extraction of fragmentation functions of light charged hadrons with mass corrections
论文作者
论文摘要
在当前和未来的高能量Lepton和HADRON COLLIDER上实现理论预测的最高精度,需要从全球QCD分析中精确确定光和重型HADRON的片段化函数(FFS),并具有很高的准确性。我们描述了来自单包式强体产生的电荷亲,带电的Kaons和质子/抗蛋白质的未脱脂FF,从近代到范围的订单以及近代到next to-next-to-Lead-Lead-Lead order Order Order Order Orce qcd中的单个包含强体产生中的质子和抗蛋白酶。提出了一组新的FFS,称为{\ tt sgks20}。我们包括用于确定的带电的HADRON($π^\ pm,k^\ pm $和$ p/\ bar {p} $)以及未识别的光电载体,$ h^\ pm $的数据,并表明这些数据对碎片功能的大小和不确定性都有重大影响。我们研究了更高级扰动QCD校正和有限质量效应的包含。我们将新的{\ tt sgks20} FF与文献中可用的其他FF进行了比较,并在一般合理的同意中找到了一些,但对于某些Parton物种而言也很重要。我们表明,从我们的新FFS获得的理论预测与分析的SIA数据非常吻合,尤其是在$ z $的小值时。本工作中介绍的{\ tt sgks20} FF集可通过{\ tt lhapdf}接口获得。
Achieving the highest possible precision for theoretical predictions at the present and future high-energy lepton and hadron colliders requires a precise determination of fragmentation functions (FFs) of light and heavy charged hadrons from a global QCD analysis with great accuracy. We describe a simultaneous determination of unpolarized FFs of charged pions, charged kaons and protons/antiprotons from single-inclusive hadron production in electron-positron annihilation (SIA) data at next-to-leading order and next-to-next-to-leading order accuracy in perturbative QCD. A new set of FFs, called {\tt SGKS20}, is presented. We include data for identified light charged hadrons ($π^\pm, K^\pm$ and $p/\bar{p}$) as well as for unidentified light charged hadrons, $h^\pm$ and show that these data have a significant impact on both size and uncertainties of the fragmentation functions. We examine the inclusion of higher-order perturbative QCD corrections and finite-mass effects. We compare the new {\tt SGKS20} FFs with other recent FFs available in the literature and find in general reasonable agreement, but also important differences for some parton species. We show that theoretical predictions obtained from our new FFs are in very good agreement with the analyzed SIA data, especially at small values of $z$. The {\tt SGKS20} FF sets presented in this work are available via the {\tt LHAPDF} interface.