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Single-inclusive jet production in electron-nucleon collisions through next-to-next-to-leading order in perturbative QCD

机译:电子-核子碰撞中的单包射流通过扰动QCD中的从下到前的顺序生成

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摘要

We compute the O(alpha(2)alpha(2)(s)) perturbative corrections to inclusive jet production in electron-nucleon collisions. This process is of particular interest to the physics program of a future Electron Ion Collider (EIC). We include all relevant partonic processes, including deep-inelastic scattering contributions, photon-initiated corrections, and parton-parton scattering terms that first appear at this order. Upon integration over the final-state hadronic phase space we validate our results for the deep-inelastic corrections against the known next-to-next-to-leading order (NNLO) structure functions. Our calculation uses the N-jettiness subtraction scheme for performing higher-order computations, and allows for a completely differential description of the deep-inelastic scattering process. We describe the application of this method to inclusive jet production in detail, and present phenomenological results for the proposed EIC. The NNLO corrections have a non-trivial dependence on the jet kinematics and arise from an intricate interplay between all contributing partonic channels. (C) 2016 The Authors. Published by Elsevier B.V.
机译:我们计算O(alpha(2)alpha(2)(s))扰动校正,以产生电子-核子碰撞中的包容射流。未来的电子对撞机(EIC)的物理程序特别感兴趣此过程。我们包括所有相关的部分声子过程,包括深非弹性散射贡献,光子引发的校正和按此顺序首次出现的部分子-部分子散射项。在最终状态强子相空间上进行积分后,我们针对已知的次先至次要先导阶(NNLO)结构函数对深弹校正进行了验证。我们的计算使用N色差减法来执行高阶计算,并允许对深层非弹性散射过程进行完全差分描述。我们详细描述了此方法在包容性喷气机生产中的应用,并提出了拟议的EIC的现象学结果。 NNLO校正对射流运动学有很重要的依赖性,它是由所有贡献的声子通道之间复杂的相互作用引起的。 (C)2016作者。由Elsevier B.V.发布

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