论文标题

小$ x $的背靠背包容性二行:NLO的Sudakov抑制和Gluon Atatration

Back-to-back inclusive dijets in DIS at small $x$: Sudakov suppression and gluon saturation at NLO

论文作者

Caucal, Paul, Salazar, Farid, Schenke, Björn, Venugopalan, Raju

论文摘要

在小$ x _ {\ rm bj} $上深度非弹性散射(DIS)中的背对背dijet横截面被多体的多个散射和筛选效果所抑制。在这些运动学中,它们对来自软gluon辐射的大型Sudakov对数也同样敏感。因此,在此DIS通道中揭示新的物理学需要了解这两种现象的相互作用。在这项工作中,我们计算出颜色玻璃冷凝器有效场理论(CGC EFT)中的背对背运动学(NLO)的小$ x _ {\ rm bj} $在背对背运动学(NLO)的背靠背运动学(NLO)中的小$ x _ {\ rm bj} $。我们的结果首次包括对影响因素的所有真实和虚拟NLO的贡献。其中包括所有Sudakov double和单个对数贡献,以及所有其他有限的$ \ MATHCAL {O}(α_s)$ enter在此订单中贡献的术语。我们明确证明,可以在CGC EFT中同时执行小$ x $和Sudakov对数的重新召集。这就要求jimwlk内核用于小型$ x $ evolution的weizsäcker-williams(WW)gluon分布满足通过终生订购连续的gluon排放施加的运动限制;对应于大型双横向对数的重新召集的内核的相应修改恰恰是稳定Jimwlk演变所需的类型,而不是领先的对数精度。我们计算NLO背对背分布的方位角谐波,并表现出它们对非极化和线性极化WW Gluon分布的敏感性。最后,我们讨论了TMD分解如何通过小$ x $的新兴饱和度量表打破。

Back-to-back dijet cross-sections in deeply inelastic scattering (DIS) at small $x_{\rm Bj}$ are suppressed by many-body multiple scattering and screening effects arising from gluon saturation at high parton densities. They are similarly sensitive in these kinematics to large Sudakov logarithms from soft gluon radiation. Uncovering novel physics in this DIS channel therefore requires understanding the interplay of the two phenomena. In this work, we compute the small $x_{\rm Bj}$ inclusive dijet DIS cross-section in back-to-back kinematics at next-to-leading order (NLO) in the Color Glass Condensate effective field theory (CGC EFT). Our result includes, for the first time, all real and virtual NLO contributions to the impact factor. These include all Sudakov double and single logarithm contributions, as well as all other finite $\mathcal{O}(α_s)$ terms that contribute at this order. We demonstrate explicitly that resummations of small $x$ and Sudakov logarithms can be performed simultaneously in the CGC EFT. This requires that the JIMWLK kernel for small $x$ evolution of the Weizsäcker-Williams (WW) gluon distribution satisfies a kinematic constraint imposed by lifetime ordering of successive gluon emissions; the corresponding modifications to the kernel, corresponding to resummations of large double transverse logarithms, are precisely of the type required to stabilize JIMWLK evolution beyond leading logarithmic accuracy. We compute the azimuthal harmonics of the NLO back-to-back distributions and show their sensitivity to both the unpolarized and linearly polarized WW gluon distributions. Finally, we discuss how TMD factorization is broken by an emergent saturation scale at small $x$.

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