COMPASS实验中SIDIS纵向-目标偏振相关方位不对称性的测量

B. Parsamyan
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引用次数: 6

摘要

本文首次用COMPASS实验获得了单强子产生质子时纵向自旋相关的方位不对称性的初步结果。对2007年和2011年COMPASS纵向极化质子($NH_3$)靶采集的完整数据样本,分别使用160 \gvc和200 \gvc μ介子束进行了分析。在QCD部分子模型方法中,提取的不对称可以访问某些横向动量相关的扭转\textit{-2}和\textit{更高扭转}部分子分布函数和碎片函数的特定卷积。为了获得所涉及的分布的不同特征,对正、负单强子产生的不对称性提取为不同运动变量的函数。大量收集的数据和广泛的运动范围使结果具有独特的重要性。得到的不对称性与先前HERMES实验的测量结果和现有的模型预测结果进行了比较。
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Measurement of longitudinal-target-polarization dependent azimuthal asymmetries in SIDIS at COMPASS experiment
Preliminary results obtained by the COMPASS experiment for longitudinal-spin-dependent azimuthal asymmetries in single-hadron muoproduction off protons are presented for the first time. The analysis was carried out on the full data sample collected by COMPASS with longitudinally polarized proton ($NH_3$) target in 2007 and 2011 using 160~\gvc and 200~\gvc muon beams, correspondingly. Within QCD parton model approach extracted asymmetries are giving access to the specific convolutions of certain transverse-momentum-dependent \textit{twist-2} and \textit{higher twist} parton distribution functions and fragmentation functions. In order to access different features of the involved distributions, the asymmetries are extracted as functions of different kinematic variables for both positive and negative single-hadron productions. The significant amount of collected data and wide kinematic range give unique importance to the results. Obtained asymmetries are compared with previous measurements performed by HERMES experiment and with available model predictions.
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