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Measurements of top-quark pair differential cross-sections in the lepton+jets channel in pp collisions at s√=8 TeVs=8 TeV using the ATLAS detector

机译:使用ATLAS探测器在s√= 8 TeVs = 8 TeV的pp碰撞中测量轻子+喷射通道中顶夸克对的微分截面

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摘要

Measurements of normalized differential cross-sections of top-quark pair production are presented as a function of the top-quark, tt¯tt¯ system and event-level kinematic observables in proton–proton collisions at a centre-of-mass energy of s√=8TeVs=8TeV . The observables have been chosen to emphasize the tt¯tt¯ production process and to be sensitive to effects of initial- and final-state radiation, to the different parton distribution functions, and to non-resonant processes and higher-order corrections. The dataset corresponds to an integrated luminosity of 20.3 fb −1−1 , recorded in 2012 with the ATLAS detector at the CERN Large Hadron Collider. Events are selected in the lepton+jets channel, requiring exactly one charged lepton and at least four jets with at least two of the jets tagged as originating from a b-quark. The measured spectra are corrected for detector effects and are compared to several Monte Carlo simulations. The results are in fair agreement with the predictions over a wide kinematic range. Nevertheless, most generators predict a harder top-quark transverse momentum distribution at high values than what is observed in the data. Predictions beyond NLO accuracy improve the agreement with data at high top-quark transverse momenta. Using the current settings and parton distribution functions, the rapidity distributions are not well modelled by any generator under consideration. However, the level of agreement is improved when more recent sets of parton distribution functions are used.
机译:质子-质子碰撞在质子中心能量为s的情况下,顶夸克对产生的归一化微分横截面的测量结果是顶夸克,ttétt系统和事件级运动学可观测量的函数√= 8TeVs = 8TeV选择可观察的物体是为了强调ttétt的产生过程,并对初始状态和最终状态的辐射,不同的parton分布函数以及非谐振过程和高阶校正敏感。该数据集对应于2012年在CERN大型强子对撞机上使用ATLAS探测器记录的20.3 fb -1-1的综合光度。在lepton + jets通道中选择事件,需要恰好一个带电的轻子和至少四个喷射器,其中至少两个喷射器标记为来自b-夸克。对测得的光谱进行校正以改善探测器的影响,并与几种蒙特卡洛模拟进行比较。结果与运动学范围内的预测结果基本吻合。尽管如此,大多数发生器预测,在高值时,夸克的横向动量分布比在数据中观察到的要难。超出NLO精度的预测可以改善与高夸克横向动量数据的一致性。使用当前设置和parton分布函数,考虑中的任何生成器都无法很好地建模速度分布。但是,当使用更多组的parton分发功能时,协议级别会提高。

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