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Studies of hadronization mechanisms using pion electroproduction in deep inelastic scattering from nuclei

机译:利用核心深非弹性散射沟电切割机制的研究

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Atomic nuclei can be used as spatial analyzers of the hadronization process in semi-inclusive deep inelastic scattering. The study of this process using fully-identified final state hadrons began with the HERMES program in the late 1990s, and is now continuing at Jefferson Lab. In the measurement described here, electrons and positive pions were measured from a 5 GeV electron beam incident on targets of liquid deuterium, C, Fe, and Pb using CLAS in Hall B. The broadening of the transverse momentum of positive pions has been studied in detail as a function of multiple kinematic variables, and interpreted in terms of the transport of the struck quark through the nuclear systems. New insights are being obtained into the hadronization process from these studies; and experiments of this type can be relevant for the interpretation of jet quenching and proton-nucleus collisions at RHIC and LHC. These measurements will be extended in the next few years with the approved JLab experiment E12-06-117, and later at a future Electron-Ion Collider.
机译:原子核可以用作半包层深入散射中的脱氮过程的空间分析仪。使用全面确定的最终州立州的这一进程的研究开始于20世纪90年代后期的Hermes计划,现在正在继续杰弗森实验室。在这里描述的测量中,使用Clas在霍尔B霍尔B中的液体氘,C,Fe和Pb上的5 GEV电子束测量电子和阳性束。研究了阳性阳性横向动量的扩大细节作为多个运动变量的函数,并通过核系统在策划夸克的运输方面解释。从这些研究中正在获得新的见解,从这些研究中获取外邦化进程;这种类型的实验可以与RHIC和LHC的喷射猝灭和质子核碰撞的解释相关。这些测量将在未来几年内延长批准的JLAB实验E12-06-117,后来在未来的电子离子撞机中。

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