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首页> 外文期刊>The journal of high energy physics >The seven-gluon amplitude in multi-Regge kinematics beyond leading logarithmic accuracy
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The seven-gluon amplitude in multi-Regge kinematics beyond leading logarithmic accuracy

机译:多调节运动学中的七胶振幅超出了领先的对数精度

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A bstract We present an all-loop dispersion integral, well-defined to arbitrary logarithmic accuracy, describing the multi-Regge limit of the 2 → 5 amplitude in planar N = 4 $$ mathcal{N}=4 $$ super Yang-Mills theory. It follows from factorization, dual conformal symmetry and consistency with soft limits, and specifically holds in the region where the energies of all produced particles have been analytically continued. After promoting the known symbol of the 2-loop N -particle MHV amplitude in this region to a function, we specialize to N = 7, and extract from it the next-to-leading order (NLO) correction to the BFKL central emission vertex, namely the building block of the dispersion integral that had not yet appeared in the well-studied six-gluon case. As an application of our results, we explicitly compute the seven-gluon amplitude at next-to-leading logarithmic accuracy through 5 loops for the MHV case, and through 3 and 4 loops for the two independent NMHV helicity configurations, respectively.
机译:Bstract我们呈现了一个全环形分散积分,定义为任意对数精度,描述了平面的2→5幅度的多调节极限,n = 4 $$ mathcal {n} = 4 $$超级阳米尔斯理论。它遵循分解,双保形对称性和与软限度的一致性,并且在所有产生颗粒的能量进行分析上继续存在的区域中。在将该区域中的2个环N级MHV幅度的已知符号推广到函数之后,我们专门化为n = 7,并从它到BFKL中央发射顶点的下一端订单(NLO)校正中提取,即尚未在学习的六个胶合盒中出现的分散积分的构建块。作为我们的结果的应用,我们将在下面的第二个循环精度下显式计算七胶振幅,通过5个循环,分别为两个独立的NMHV螺旋螺旋配置3和4个环路。

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