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Measurement of dijet azimuthal decorrelation in pp collisions at ... formula ...

机译:在...公式...的pp碰撞中测量dijet方位角去相关

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摘要

A measurement of the decorrelation of azimuthal angles between the two jets with the largest transverse momenta is presented for seven regions of leading jet transverse momentum up to 2.2 TeV. The analysis is based on the proton-proton collision data collected with the CMS experiment at a centre-of-mass energy of 8 TeV corresponding to an integrated luminosity of 19.7 fb-1. The dijet azimuthal decorrelation is caused by the radiation of additional jets and probes the dynamics of multijet production. The results are compared to fixed-order predictions of perturbative quantum chromodynamics (QCD), and to simulations using Monte Carlo event generators that include parton showers, hadronization, and multiparton interactions. Event generators with only two outgoing high transverse momentum partons fail to describe the measurement, even when supplemented with next-to-leading-order QCD corrections and parton showers. Much better agreement is achieved when at least three outgoing partons are complemented through either next-to-leading-order predictions or parton showers. This observation emphasizes the need to improve predictions for multijet production.
机译:对于前导射流横向动量至2.2 TeV的七个区域,给出了两个具有最大横向动量的射流之间方位角去相关的测量结果。该分析基于通过CMS实验收集的质子-质子碰撞数据,其质心能量为8 TeV,对应于19.7 fb -1 的综合光度。 dijet方位解相关是由其他喷嘴的辐射引起的,并探究了多喷嘴生产的动态。将结果与微扰量子色动力学(QCD)的定序预测进行比较,并与使用蒙特卡洛事件生成器(包括parton淋浴,强子化和多部分相互作用)的模拟进行比较。即使添加了次领先的QCD校正和parton阵雨,只有两个向外的高横向动量parton的事件生成器也无法描述测量结果。当至少三个外发parton通过次先预测或parton淋浴得到补充时,可以达成更好的协议。该观察结果强调需要改进多喷嘴生产的预测。

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