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Azimuthal anisotropy of long-range correlations at LHC energy in Monte Carlo model with string fusion

机译:弦融合的蒙特卡洛模型在LHC能量处远距离相关的方位各向异性

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摘要

Long-range multiplicity correlations in intervals separated in pseudorapidity and azimuth are studied in the framework of string fusion approach. We applied a Monte Carlo model, in which the string configurations in the transverse plane and rapidity are simulating event-by-event. The string interaction is realized in the lattice string fusion approach with introduction of a grid in the transverse plane. We assumed that the azimuthal anisotropy of particle production is caused by parton energy loss traveling trough the media formed by clusters of fused strings : Δpt/Δx = ?α(pt √η)2/3, where η is a string density. In the cellular approach the Bresenham’s line algorithm has been applied. It is obtained that in AA collisions, the parton energy loss seems to play considerable role, in particular, by providing large contribution to the correlation of mean transverse momentum with multiplicity. The developed approach provides non-zero values flows in p-Pb collisions at LHC energies and produces the pattern similar to the one of the experimental di-hadron analysis.
机译:在字符串融合方法的框架内,研究了以伪快速度和方位角分隔的间隔中的远程多重相关性。我们应用了蒙特卡洛模型,其中在横向平面中的弦线配置和快速性逐个事件进行模拟。通过在横向平面中引入网格,以晶格弦融合方法实现弦相互作用。我们假设粒子产生的方位各向异性是由于部分质子能量流经通过熔融弦簇形成的介质而传播的:Δpt/Δx=?α(pt√η)2/3,其中η是弦密度。在蜂窝方法中,已经应用了Bresenham的线路算法。结果表明,在AA碰撞中,parton能量损失似乎起着相当大的作用,特别是通过对平均横向动量与多重性的相关性做出巨大贡献。所开发的方法在LHC能量下的p-Pb碰撞中提供了非零值流动,并产生了与实验双强子分析类似的图形。

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