High-$p_T$ parton propagation and quenching in the medium

K. Tywoniuk
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Abstract

Jet quenching stands out as one of the most striking phenomena measured in heavy-ion collisions. After being discovered at RHIC as a suppression of high-$p_T$ hadrons, with the development of reconstruction techniques capable of dealing with large backgrounds, it has also been confirmed in a wide range of measurements involving fully reconstructed jets. The observed suppression patterns are generally understood as arising from interactions with a color deconfined medium, corroborating the role of jets as probes of the hot and dense matter created in ultrarelativistic heavy-ion collisions. In this proceeding, we report on recent theoretical developments related to how jet fragmentation inside the medium is affected by energy-loss processes. In particular, it is shown how a novel Sudakov suppression factor affects the single-inclusive jet spectrum at high-$p_T$. These developments provide first steps toward a unified theoretical understanding of the quenching of hadrons and jets, accompanied by substructure modifications.
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高- p_T - parton在介质中的传播和淬火
射流淬火是重离子碰撞中最引人注目的现象之一。在RHIC上被发现抑制高- p_T$强子后,随着能够处理大背景的重建技术的发展,它也在涉及完全重建射流的广泛测量中得到证实。观测到的抑制模式通常被理解为与颜色定义的介质相互作用产生的,证实了射流作为超相对论性重离子碰撞中产生的热而致密物质的探测器的作用。在这篇论文中,我们报告了有关介质内射流破碎如何受到能量损失过程影响的最新理论进展。特别说明了一种新的Sudakov抑制因子如何影响高- p_T下的单包射流谱。这些发展为对强子和喷流猝灭的统一理论理解提供了第一步,并伴随着子结构的改变。
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