Leading-colour-based unweighted event generation for multi-parton tree-level processes

Rikkert Frederix, Timea Vitos
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Abstract

In this work, we revisit unweighted event generation for multi-parton tree-level processes in massless QCD. We introduce a two-step approach, in which initially unweighted events are generated at leading-colour (LC) accuracy, followed by a reweighting of these events to full-colour (FC) accuracy and applying an additional unweighting cycle. This method leverages the simple structure of LC integrands, enabling optimized phase-space parameterisations and resulting in high primary unweighting efficiencies, ranging from the percent level for $2 \to 4$ processes to the per-mille level for $2 \to 7$ processes. Given that the LC-accurate matrix elements closely approximate the FC-accurate ones, the secondary unweighting efficiencies exceed 50%. Our results suggest that this two-step approach offers an efficient alternative to direct event generation at FC accuracy.
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基于前导色的多粒子树级过程非加权事件生成
在这项工作中,我们重新审视了无质量 QCD 中多部分顶层过程的非加权事件生成。我们引入了一种两步法,即首先以前导色(LC)精度生成非加权事件,然后将这些事件重新加权到全色(FC)精度,并应用额外的非加权循环。这种方法利用了 LC 积分的简单结构,实现了优化的相位-空间参数化,并产生了很高的初级去重效率,从 2 美元到 4 美元过程的百分比水平,到 2 美元到 7 美元过程的每百万分之一水平。鉴于 LC 精确矩阵元素与 FC 精确矩阵元素非常接近,二次去重效率超过了 50%。我们的结果表明,这种两步法提供了一种高效的替代方法,可以在 FC 精确度下直接生成事件。
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