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Jet Observables of Parton Energy Loss in High-Energy Nuclear Collisions

机译:高能核碰撞中Parton能量损失的喷气观测

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摘要

While strong attenuation of single particle production and particle correlations has provided convincing evidence for large parton energy loss in the QGP, its application to jet tomography has inherent limitations due to the inclusive nature of the measurements. Generalization of this suppression to full jet observables leads to an unbiased,more differential and thus powerful approach to determining the characteristics of the hot QCD medium created in high-energy nuclear collisions. In this article we report on recent theoretical progress in calculating jet shapes and the related jet cross sections in the presence of QGP-induced parton energy loss. (i) A theoretical model of intra-jet energy flow in heavy-ion collisions is discussed. (ii) Realistic numerical simulations demonstrate the nuclear modification factor RAA(pT ) evolves continuously with the jet cone size Rmax or the acceptance cut ωmin - a novel feature of jet quenching. The anticipated broadening of jets is subtle and most readily manifested in the periphery of the cone for smaller cone radii.
机译:尽管单粒子产生和粒子相关性的强烈衰减已经为QGP中的大量Parton能量损失提供了令人信服的证据,但由于测量的包容性,其在喷气断层扫描中的应用存在固有的局限性。将这种抑制作用推广到可观测到的全射流导致了一种无偏的,更微分的,因而有力的方法来确定在高能核碰撞中产生的热QCD介质的特性。在本文中,我们报告了在存在QGP引起的parton能量损失的情况下,在计算射流形状和相关射流横截面方面的最新理论进展。 (i)讨论了重离子碰撞中射流内能量流的理论模型。 (ii)现实的数值模拟表明,核修饰因子RAA(pT)随射流锥尺寸Rmax或接受截断角ωmin的变化而不断变化,这是射流淬火的新特征。对于较小的圆锥半径,预期的射流扩宽是微妙的,并且最容易体现在圆锥的外围。

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