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Nested soft-collinear subtractions in NNLO QCD computations

机译:NNLO QCD计算中的嵌套软共线性减法

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摘要

We discuss a modification of the next-to-next-to-leading order (NNLO) subtraction scheme based on the residue-improved sector decomposition that reduces the number of double-real emission sectors from five to four. In particular, a sector where energies and angles of unresolved particles vanish in a correlated fashion is redundant and can be discarded. This simple observation allows us to formulate a transparent iterative subtraction procedure for double-real emission contributions, to demonstrate the cancellation of soft and collinear singularities in an explicit and (almost) process-independent way and to write the result of a NNLO calculation in terms of quantities that can be computed in four space-time dimensions. We illustrate this procedure explicitly in the simple case of O(αs2) gluonic corrections to the Drell–Yan process of qq¯ annihilation into a lepton pair. We show that this framework leads to fast and numerically stable computation of QCD corrections.
机译:我们讨论了基于残基改进的扇区分解的下一个到下一个领先阶(NNLO)减法方案的修改,该分解将双实际发射扇区的数量从五个减少到四个。特别是,未分解粒子的能量和角度以相关方式消失的扇区是多余的,可以丢弃。这种简单的观察使我们能够为双真实排放贡献制定一个透明的迭代减法程序,以显式且(几乎)与过程无关的方式证明消除软和共线奇异点,并用以下公式写NNLO计算的结果:可以在四个时空维度上计算的数量。我们在 O α s 2 对Drell–Yan过程的胶质校正的 q q 歼灭成轻子。我们表明,该框架可导致QCD校正的快速和数值稳定的计算。

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