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Forward gluon production in hadron-hadron scattering with Pomeron loops

机译:具有波美隆环的强子-强子散射中的正向胶子产生

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摘要

We discuss new physical phenomena expected in particle production in hadron-hadron collisions at high energy, as a consequence of Pomeron loop effects in the evolution equations for the Color Glass Condensate. We focus on gluon production in asymmetric, `dilute-dense', collisions : a dilute projectile scatters off a dense hadronic target, whose gluon distribution is highly evolved. This situation is representative for particle production in proton-proton collisions at forward rapidities (say, at LHC) and admits a dipole factorization similar to that of deep inelastic scattering (DIS). We show that at sufficiently large forward rapidities, where the Pomeron loop effects become important in the evolution of the target wavefunction, gluon production is dominated by `black spots' (saturated gluon configurations) up to very large values of the transverse momentum, well above the average saturation momentum in the target. In this regime, the produced gluon spectrum exhibits diffusive scaling, so like DIS at sufficiently high energy.
机译:我们讨论了高能强子-强子碰撞中粒子产生中预期的新物理现象,这是彩色玻璃冷凝物演化方程中的波美隆回路效应的结果。我们专注于非对称,“稀密”碰撞中的胶子产生:稀薄的弹丸从密集的强子靶飞散,靶子的胶子分布高度演化。这种情况代表了质子-质子碰撞在向前速度下(例如在LHC上)产生的颗粒,并且允许偶极分解,类似于深非弹性散射(DIS)。我们表明,在足够大的前向速度下,Pomeron环效应在目标波函数的演变中变得很重要,胶子的产生主要受“黑点”(饱和胶子结构)的影响,直至横向动量的非常大的值,远高于目标中的平均饱和动量。在这种情况下,产生的胶子光谱表现出扩散的比例,因此在足够高的能量下像DIS。

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