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Azimuthal asymmetry in the risetime of the surface detector signals of the Pierre Auger Observatory

机译:皮埃尔·奥格天文台表面探测器信号上升时间的方位角不对称

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摘要

The azimuthal asymmetry in the risetime of signals in Auger surface detector stations is a source of information on shower development. The azimuthal asymmetry is due to a combination of the longitudinal evolution of the shower and geometrical effects related to the angles of incidence of the particles into the detectors. The magnitude of the effect depends upon the zenith angle and state of development of the shower and thus provides a novel observable, (sec(theta))_max , sensitive to the mass composition of cosmic rays above 3x10^18 eV. By comparing measurements with predictions from shower simulations, we find for both of our adopted models of hadronic physics (QGSJETII-04 and EPOS-LHC) an indication that the mean cosmic-ray mass increases slowly with energy, as has been inferred from other studies. However, the mass estimates are dependent on the shower model and on the range of distance from the shower coreselected. Thus the method has uncovered further deficiencies in our understanding of shower modeling that must be resolved before the mass composition can be inferred from (sec(theta))_max.
机译:俄歇表面探测站中信号上升时间的方位不对称性是有关阵雨发展的信息来源。方位角不对称性是由于喷淋的纵向演变和与粒子进入检测器的入射角有关的几何效应的结合。影响的大小取决于天顶角和淋浴的发展状态,因此提供了一种新颖的,可观测的(sec(θ))_ max,对3x10 ^ 18 eV以上的宇宙射线的质量组成敏感。通过将测量结果与淋浴模拟的预测结果进行比较,我们发现,对于我们采用的强子物理学模型(QGSJETII-04和EPOS-LHC),这表明平均宇宙射线质量随能量缓慢增加,这已从其他研究中得出结论。 。但是,质量估计值取决于淋浴器型号以及距所选淋浴器芯的距离范围。因此,该方法在我们对淋浴建模的理解中发现了进一步的缺陷,必须从(sec(theta))_ max推断质量组成之前解决该缺陷。

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