重离子碰撞中的射流子结构与能量相关器

Q4 Physics and Astronomy
C. Andres , F. Dominguez , J. Holguin , C. Marquet , I. Moult
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引用次数: 0

摘要

共形场论的最新发展促使我们将对撞机射流子结构重新表述为研究特定类别光射线算子的相关函数及其相关算子乘积展开(OPE)。最近,我们在 RHIC 和大型强子对撞机的质子-质子对撞中测量到了这些算子的多点相关函数,从而可以通过实验验证光射线 OPE 的特性。在本讲座中,我们将这种方法应用于重离子对撞中的射流子结构。具体地说,我们计算了中等质量夸克喷流的两点能能相关器,并揭示了它在厘清问题的不同尺度方面的显著潜力,因为它们都印刻在相关器谱的角尺度上。特别是,我们的分析代表了能量相关器同时解决与重夸克相关的内在尺度和源于与介质相互作用的新兴尺度的第一个例子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Jet substructure in heavy-ion collisions with energy correlators

Recent developments in conformal field theories have motivated a reformulation of collider jet substructure as the study of correlation functions of a specific class of light-ray operators and their associated operator product expansion (OPE). Multi-point correlation functions of these operators have recently been measured in proton-proton collisions at RHIC and the LHC, allowing us to experimentally verify properties of the light-ray OPE. In this talk, we apply this approach to jet substructure in heavy-ion collisions. Specifically, we compute the two-point energy-energy correlator of an in-medium massive quark jet, and reveal its remarkable potential to disentangle the different scales of the problem, as they are imprinted into the angular scales of the correlator spectra. In particular, our analysis represents the first example where energy correlators simultaneously resolve both an intrinsic scale, associated with the heavy quark, and an emergent scale, originating from the interactions with the medium.

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来源期刊
Nuclear and Particle Physics Proceedings
Nuclear and Particle Physics Proceedings Physics and Astronomy-Nuclear and High Energy Physics
CiteScore
0.40
自引率
0.00%
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0
期刊介绍: Nuclear and Particle Physics Proceedings is the premier publication outlet for the proceedings of key conferences on nuclear and high-energy physics and related areas. The series covers both large international conferences and topical meetings. The newest discoveries and the latest developments, reported at carefully selected meetings, are published covering experimental as well as theoretical particle physics, nuclear and hadronic physics, cosmology, astrophysics and gravitation, field theory and statistical systems, and physical mathematics.
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