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首页> 外文期刊>Progress of Theoretical Physics. Supplement >Two-Hadron Correlations in the Color Glass Condensate Formalism
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Two-Hadron Correlations in the Color Glass Condensate Formalism

机译:彩色玻璃冷凝形式主义中的两个强子相关性

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摘要

Two-hadron correlations are a sensitive probe of the dynamics of gluon saturation and the Color Glass Condensate formalism where the degrees of freedom are Wilson lines of the gluon field. It is shown that unlike structure functions in DIS and single hadron production in proton-nucleus collisions, higher point functions of Wilson lines appear in two-hadron production cross section. We investigate the energy (x) evolution of these higher point functions using the JIMWLK evolution equations and show that dipole approximation, employed commonly in the literature to fit the di-hadron data measured by the STAR collaboration in the forward rapidity region, breaks down. This necessitates an investigation of the full hierarchy of the JIMWLK evolution equations for these higher point functions and their solutions. This can then be used to make a quantitative analysis of the di-hadron correlations in the forward rapidity region in deuteron-gold collisions at RHIC and in the long range rapidity correlations observed in proton-proton collisions at the LHC.
机译:两强子相关性是胶子饱和度和彩色玻璃冷凝物形式主义动力学的灵敏探针,其中自由度是胶子场的威尔逊线。结果表明,与DIS中的结构函数和质子-核碰撞中的单强子产生不同,Wilson线的更高点函数出现在两强子产生的横截面上。我们使用JIMWLK演化方程研究了这些更高点函数的能量(x)演化,并表明偶极子近似(在文献中通常用于拟合由STAR协作在前向速度区域中测得的双强子数据)分解了。对于这些更高点的函数及其解,有必要对JIMWLK发展方程的整个层次进行研究。然后,这可用于对RHIC的氘-金碰撞中前向速度区域中的双强子相关性以及LHC质子-质子碰撞中观察到的远距离速度相关性进行定量分析。

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