论文标题
用介质解析喷气机的时空结构
Resolving the spacetime structure of jets with medium
论文作者
论文摘要
远离QCD辐射的严格软和共线极限,Parton淋浴算法中的进化量表是模棱两可的,并且在现有的Monte Carlo事件发生器中实现了多种选择,用于质子 - 普罗顿碰撞。但是,最终的时空演变可能会导致细微的差异,具体取决于特定的选择。在这项工作中,我们量化了选择变量的可测量后果,并显示了这种选择的含义如何传播到喷气淬灭可观测物中。我们为通用进化变量开发了一种Parton淋浴算法,其中包括特殊情况,即虚拟性,角度,横向动量和形成时间。我们研究了不同演化变量的淋浴历史与受Parton能量损失影响的相空间之间的相互作用。特别是,我们在致密极限下实施喷气淬火的效果,并突出颜色相干效应的作用。我们通过分析主要的隆德飞机将不同的排序变量的结果与在Parton级别上现有的蒙特卡洛淋浴实现进行了比较。最后,我们通过面对某些关键的可观察到的结果(例如射流质量)来研究淬火喷气机对进化变量选择的敏感性。
Away from the strictly soft and collinear limit of QCD radiation the choice of evolution scale in a parton shower algorithm is ambiguous and several options have been implemented in existing Monte Carlo event generators for proton-proton collisions. However, the resulting space-time evolution could result in subtle differences depending on the particular choice. In this work we quantify measurable consequences of the choice of the evolution variable and show how the implications of such a choice propagates into jet quenching observables. We develop a parton shower algorithm for a general evolution variable, that includes as special cases the virtuality, angle, transverse momentum and formation time. We study the interplay between the shower history for different evolution variables and the phase space affected by parton energy loss. In particular, we implement effects of jet quenching in the dense limit and highlight the role of color coherence effects. We compare the results of the different ordering variables to existing Monte Carlo shower implementations on the parton level by analyzing primary Lund planes. Finally, we study the sensitivity of quenched jets to the choice of evolution variable by confronting our results for a certain key observable, such as the jet mass.