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The First Transverse Single Spin Measurement in High Energy Polarized Proton-Nucleus Collision at the PHENIX experiment at RHIC

机译:在Rhir的Phenix实验中的高能偏振质子核碰撞中的第一个横向单旋转测量

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Large single spin asymmetries in very forward neutron production seen using the PHENIX zero-degree calorimeters are a long established feature of transversely polarized proton-proton collisions at RHIC. Neutron production near zero degrees is well described by the one-pion exchange framework. The absorptive correction to the OPE generates the asymmetry as a consequence of a phase shift between the spin flip and non-spin flip amplitudes. However, the amplitude predicted by the OPE is too small to explain the large observed asymmetries. A model introducing interference of pion and α_1-Reggeon exchanges has been successful in reproducing the experimental data. During the RHIC experiment in year 2015, RHIC delivered polarized proton collisions with Au and Al nuclei for the first time, enabling the exploration of the mechanism of transverse single-spin asymmetries with nuclear collisions. The observed asymmetries showed surprisingly strong A-dependence in the inclusive forward neutron production, while the existing framework which was successfull in p+p only predicts moderate A-dependence. Thus the observed data are absolutely unexpected and unpredicted. In this report, experimental and theoretical efforts are discussed to disentangle the observed A-dependence using somewhat semi-inclusive type measurements and Monte-Carlo study, respectively.
机译:使用Phenix Zero-Degres热量计的非常正中中子生产中的大单旋转不对称是在RHIC的横向极化质子 - 质子碰撞的长期建立的特征。一沟交换框架,零度附近的中子生产很好地描述。由于自旋翻转和非自旋翻转幅度之间的相移,对OPE的吸收校正产生不对称性。然而,OPE预测的幅度太小而无法解释大观察到的不对称。引入磁极和α_1-reggebon交换的模型在再现实验数据方面取得了成功。在2015年的RARIC实验期间,RHIC首次通过AU和Al Noclei交付极化质子碰撞,从而探讨了核碰撞的横向单旋状不对称的机制。观察到的不对称性在包容性前进中子生产中表现出令人惊讶的强烈A依赖,而P + P中成功的现有框架仅预测了中等A依赖。因此,观察到的数据绝对意外和不受预测。在本报告中,讨论了实验和理论努力,以分别使用稍微半包装型测量和蒙特卡罗研究来解除观察到的A依赖性。

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