完美QCD -软QCD的一种新的通用方法

P. Christiansen
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引用次数: 0

摘要

本程序中提出的想法旨在成为描述强子碰撞的第一步,在强子碰撞中,所有软过程基本上都是强耦合的,并且相同的通用强耦合物理驱动初始和最终状态相互作用。由于目前还不可能从第一原理中推导出这样的图像,因此,本文提出了一种尝试,将完美液体观察推广到“完美QCD”指导原则,重点关注小系统中粒子产生的含义。向微观模型迈出的第一步,是论证“完美QCD”表明,初始状态下的筛选是如此之大,以至于多部分子相互作用很少或根本不重要。相反,一个目标和弹丸遗迹是前后一致地兴奋和粒子的生产主要是由辐射在定性相似的方式e + e̅̅\ rightarrow qq。最后,提出了这种“激发态残余模型”的一些可能的含义。本文认为,软物理和硬物理的时间顺序可以解释小系统中没有射流淬火,并且弹丸和目标的相干尺度提供了对小系统将表现出流动的见解。
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Perfect QCD – a new Universal approach to soft QCD
The ideas presented in this proceeding aims to be a first step towards a description of hadronic collisions where all soft processes are fundamentally strongly coupled and the same Universal strongly coupled physics drives both initial and final-state interactions. As it is not currently possible to derive such a picture from first principles, instead, an attempt to generalize the perfect liquid observation to a “perfect QCD” guiding principle is presented, focusing on implications for particle production in small systems. The first steps towards a microscopic model is taken by arguing that “perfect QCD” suggests that the screening in the initial state is so large that multi-parton interactions are of little or no importance. Instead, a target and projectile remnant is coherently excited and particle production is mainly driven by radiation in a qualitative similar manner as e+ e ̅  \rightarrow qq̅. Finally, some of the possible implications of this “excited remnant model” are presented. It is argued that the time ordering of soft and hard physics can explain the absence of jet quenching in small systems and that the coherence scale of the projectile and target provides insights into what small systems will exhibit flow.
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