Dihadron Azimuthal Correlations in Deep-Inelastic Scattering Off Nuclear Targets

CLAS Collaboration
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Abstract

We measured the nuclear dependence of the di-pion azimuthal correlation function in deep-inelastic scattering (DIS) using the CEBAF Large Acceptance Spectrometer (CLAS) and a 5 GeV electron beam. As the nuclear-target size increases, transitioning from deuterium to carbon, iron, and lead, the correlation function broadens monotonically. Its shape exhibits a significant dependence on kinematics, including the transverse momentum of the pions and the difference in their rapidity. None of the various Monte-Carlo event generators we evaluated could fully replicate the observed correlation functions and nuclear effects throughout the entire phase space. As the first study of its kind in DIS experiments, this research provides an important baseline for enhancing our understanding of the interplay between the nuclear medium and the hadronization process in hadron production.
核目标深弹道散射中的迪哈德龙方位相关性
我们利用CEBAF大型接受谱仪(CLAS)和5 GeV电子束测量了深弹性散射(DIS)中二离子方位相关函数的核依赖性。随着核-靶尺寸的增加,从氘过渡到碳、铁和铅,相关函数单调地拓宽。它的形状与运动学有很大关系,包括粒子的横向动量和它们的速度差异。我们评估过的各种蒙特卡洛事件发生器,没有一个能在整个相空间完全复制观测到的相关函数和核效应。作为在 DIS 实验中进行的首次同类研究,这项研究为加深我们对强子产生过程中核鎓与强子化过程之间相互作用的理解提供了一个重要的基线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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