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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Eccentricity and elliptic flow in proton-proton collisions from parton evolution
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Eccentricity and elliptic flow in proton-proton collisions from parton evolution

机译:帕顿演化过程中质子-质子碰撞中的偏心率和椭圆流

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摘要

It has been argued that high-multiplicity proton-proton collisions at the LHC may exhibit collective phenomena usually studied in the context of heavy-ion collisions, such as elliptic flow. We study this issue using DIPSY-a Monte Carlo event generator based on the QCD dipole model. We calculate the eccentricity of the transverse area defined by the spatial distribution of produced gluons. The resulting elliptic flow is estimated to be about 6%, comparable to the value in nucleus-nucleus collisions at RHIC and the LHC. Experimentally, elliptic flow is inferred from the azimuthal correlation between hadrons, which receives contributions from collective flow, and from various other effects referred to as "nonflow". We discuss how to identify in experiments the signal of flow in the presence of large nonflow effects.
机译:有人认为,大型强子对撞机的高质子-质子碰撞可能表现出通常在重离子碰撞的情况下研究的集体现象,例如椭圆流。我们使用基于QCD偶极子模型的DIPSY-a蒙特卡洛事件发生器研究了此问题。我们计算由产生的胶子的空间分布定义的横向区域的偏心率。估计产生的椭圆流量约为6%,与RHIC和LHC处的核-核碰撞值相当。从实验上讲,椭圆流是根据强子之间的方位角相关性推断的,强子之间的方位角相关性来自集体流,也可以从各种其他影响(称为“非流”)中获得贡献。我们讨论在实验中如何在存在较大的非流动效应的情况下识别流动信号。

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