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Measurement of the double-differential inclusive jet cross section in proton–proton collisions at ... formula ...

机译:在... ... ...公式下质子-质子碰撞中双微分包含射流截面的测量

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摘要

A measurement of the double-differential inclusive jet cross section as a function of jet transverse momentum pT and absolute jet rapidity |y| is presented. The analysis is based on proton–proton collisions collected by the CMS experiment at the LHC at a centre-of-mass energy of 13 TeV. The data samples correspond to integrated luminosities of 71 and 44 pb-1 for |y|  3 and 3.2  |y|  4.7, respectively. Jets are reconstructed with the anti-kt clustering algorithm for two jet sizes, R, of 0.7 and 0.4, in a phase space region covering jet pT up to 2 TeV and jet rapidity up to |y| = 4.7. Predictions of perturbative quantum chromodynamics at next-to-leading order precision, complemented with electroweak and nonperturbative corrections, are used to compute the absolute scale and the shape of the inclusive jet cross section. The cross section difference in R, when going to a smaller jet size of 0.4, is best described by Monte Carlo event generators with next-to-leading order predictions matched to parton showering, hadronisation, and multiparton interactions. In the phase space accessible with the new data, this measurement provides a first indication that jet physics is as well understood at s=13TeV as at smaller centre-of-mass energies.
机译:双差包含射流横截面的测量与射流横向动量pT和绝对射流速度| y |的函数被表达。该分析基于质子-质子碰撞,质子-质子碰撞是在大型强子对撞机的质心能量为13 TeV时由CMS实验收集的。数据样本对应于| y |的综合亮度分别为71和44 pb -1 。 <3和3.2 <|| y | <4.7。使用反kt聚类算法重建射流,在相空间区域中,两个射流大小R分别为0.7和0.4,射流pT高达2 TeV,射流速度高达| y |。 = 4.7。以近乎领先的精度对扰动量子色动力学进行预测,再加上电弱和非扰动校正,可用于计算包含射流截面的绝对比例和形状。 R的横截面差异在达到0.4的较小射流尺寸时,最好由蒙特卡洛事件生成器描述,其次要的阶次预测与parton喷淋,强铁化和多parton相互作用相匹配。在新数据可访问的相空间中,该测量结果首次表明射流物理学已在 s = 13 TeV 处于较小的质心能量处。

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