论文标题
使用喷气式树在重离子碰撞中进行死锥搜索
Dead-cone searches in heavy-ion collisions using the jet tree
论文作者
论文摘要
我们探索使用重夸克的死锥作为隆德平面区域的可能性,可以将中等诱导的gluon辐射分离和表征。预计用中诱导的胶子填充死锥是由于横向动量扩大和死锥角引起的最小辐射角度之间的相互作用的结果。由于目前在重离子碰撞中测量了完全校正的隆德平面是具有挑战性的,因此我们建议使用喷气式修饰技术来识别射流树中特定的分裂,既扰动又对死锥效应敏感。为此,我们提出了一个新的Jet子结构美容器,称为Late-$ k_t $,它选择了在某个横向动量截止$ k_ {t,\ rm {cut}} $上方的QCD喷射中最截面的分裂。 $ k_ {t,\ rm {cut}} $的作用是保证扰动分裂,而选择最划线的分裂可以增强对质量效应的敏感性。作为概念的证明,我们研究了分析和蒙特卡洛模拟的分裂标记的分裂的角度分布。首先,我们在真空中得出了对数重新召开结构,并证明了其区分包容性和重量的喷气机的能力。接下来,我们扩展了对中等喷气机的计算,并表明中诱导的排放导致划线发射的增强在死锥角下方。从数值上讲,我们在不相关的热背景上证明了晚期$ k_t $的出色弹性,因此可以证实这一可观察到的潜在候选者,可以在死锥体方面揭示中等动力学。
We explore the possibility of using the dead cone of heavy quarks as a region of the Lund plane where medium-induced gluon radiation can be isolated and characterised. The filling of the dead cone by medium-induced gluons is expected to be the result of the interplay between the minimum angle of such radiation due to transverse momentum broadening and the dead-cone angle. Since the measurement of a fully corrected Lund plane in heavy-ion collisions is currently challenging, we propose to use jet grooming techniques to identify a particular splitting in the jet tree that is both perturbative and sensitive to the dead-cone effect. To that end, we propose a new jet substructure groomer, dubbed Late-$k_t$, that selects the most collinear splitting in a QCD jet above a certain transverse momentum cutoff $k_{t,\rm{cut}}$. The role of $k_{t,\rm{cut}}$ is to guarantee perturbative splittings, while selecting the most collinear splitting enhances the sensitivity to mass effects. As a proof of concept, we study the angular distribution of the splitting tagged by Late-$k_t$ both analytically and with Monte Carlo simulations. First, we derive the logarithmic resummation structure in vacuum and demonstrate its capability to distinguish between inclusive and heavy-flavoured jets. Next, we extend the calculation for in-medium jets and show that medium-induced emissions lead to an enhancement of collinear emissions below the dead cone angle. Numerically, we demonstrate an excellent resilience of Late-$k_t$ against uncorrelated thermal background, thus confirming this observable as a potential candidate to unveil medium dynamics around the dead cone regime.