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首页> 外文期刊>Physical review, D >Analysis of Drell-Yan lepton pair production in the p?p(pˉ) colliders using different angular ordering constraints and the kt-factorization approach
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Analysis of Drell-Yan lepton pair production in the p?p(pˉ) colliders using different angular ordering constraints and the kt-factorization approach

机译:使用不同角度排序约束和KT分解方法对P?P(P∞)侵占机的Drell-yan Lepton对生产分析

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In this work, the p ? p ( p ˉ ) Drell-Yan lepton pair production (DY) differential cross sections at hadron colliders, such as LHC and TEVATRON, are studied in the k t -factorization framework. In order to take into account the transverse momenta of incoming partons, we use the unintegrated parton distribution functions of Kimber et?al. (KMR) and Martin et?al. (MRW) in the leading order (LO), and next-to-leading-order (NLO) levels with the input MMHT2014 PDF libraries. Based on the different off shell partonic matrix elements, we analyze the behaviors of DY differential cross sections with respect to the invariant mass, the transverse momentum and the rapidity as well as the specific angular correlation between the produced leptons. The numerical results are compared with the experimental data, in different energies, which are reported by various collaborations, such as CDF, CMS, ATLAS, and LHCb. It is shown that the NLO-MRW and KMR schemes predict closer results to the data compared to the LO-MRW, since we do not have fragmentation. It is demonstrated that while the q * + q ˉ * → γ * / Z + g → l + + l ? + g subprocess has a negligible contribution, it has a sizable effect in the low dilepton transverse momentum. In agreement with the NNLO, perturbative quantum chromodynamics (pQCD), report (pythia, sherpa, etc.) by including the higher-order perturbative contributions the better results are archived. On the other hand as the scale of energy increases, for the LHC energies, the Compton subprocess, i.e., q * + g * → γ * / Z → l + + l ? + q , has the largest contribution to the differential cross section in the most intervals of some observables, as is expected. The variation of the differential cross section with respect to the various variables such as the invariant mass, the center of mass energy, etc. are discussed. In order to validate our results, we also consider the strong ordering constraint and the KaTie parton-level event generator.
机译:在这项工作中,p? P(Pˉ)Drell-yan Lepton对Parron侵占机(如LHC和Tevatron)的差分横截面,在K T-活动化框架中研究。为了考虑到传入Partons的横向动量,我们使用Kimber 等的未分解Paron分布函数。 (KMR)和Martin 等吗? (MRW)以领先的顺序(LO)和Next-Indern-Order(NLO)级别,其中包含输入MMHT2014 PDF库。基于不同的壳体骨阵矩阵元件,我们分析了与不变质量,横向动量和快速度的Dy差分横截面的行为以及所生产的百分点之间的比角相关性。将数值结果与不同能量的实验数据进行比较,这些数据由各种合作报告,例如CDF,CMS,ATLAS和LHCB。结果表明,与LO-MRW相比,NLO-MRW和KMR方案预测数据的更近的结果,因为我们没有碎片。据证明,虽然Q * + Qˉ*→γ* / z + g→l + + l? + G子过程具有可忽略不计的贡献,它在低Dilepton横向动量中具有相当大的效果。根据NNLO,扰动量子色能(PQCD),报告(Pythia,Sherpa等)通过包括高阶扰动贡献,恢复了更好的结果。另一方面,随着能量的规模增加,对于LHC能量,康普顿子过程,即Q * + G *→γ* / z→L + + L? + Q,在一些可观察到的最大间隔中对差分横截面具有最大的贡献,如预期的那样。讨论了差分截面相对于诸如不变质量,质量能量等的各种变量的变化。为了验证我们的结果,我们还考虑强大的订购约束和Katie Parton-Level事件发生器。

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