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Upgrading and testing the 3D reconstruction of gamma-ray air showers as observed with an array of Imaging Atmospheric Cherenkov Telescopes

机译:使用一系列成像大气Cherenkov望远镜观察到的升级和测试伽马射线风淋的3D重建

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摘要

Stereoscopic arrays of Imaging Atmospheric Cherenkov Telescopes allow to reconstruct gamma-ray-induced showers in three dimensions, which offers several advantages: direct access to the shower parameters in space and straightforward calorimetric measurement of the incident energy. In addition, correlations between the different images of the same shower are taken into account. An analysis method based on a simple 3D-model of electromagnetic showers was recently implemented in the framework of the H.E.S.S. experiment. In the present article, the method is completed by an additional quality criterion, which reduces the background contamination by a factor of about 2 in the case of extended sources, while keeping gamma-ray efficiency at a high level. On the other hand, the dramatic flares of the blazar PKS 2155-304 in July 2006, which provided H.E.S.S. data with an almost pure gamma-ray sample, offered the unique opportunity of a precision test of the 3D-reconstruction method as well as of the H.E.S.S. simulations used in its calibration. An agreement at a few percent level is found between data and simulations for the distributions of all 3D shower parameters.
机译:成像大气Cherenkov望远镜的立体阵列允许在三个维度上重建伽马射线诱发的阵雨,这提供了几个优点:直接访问空间中的阵雨参数以及直接进行入射能量的量热测量。另外,考虑到同一淋浴的不同图像之间的相关性。最近在H.E.S.S.框架中实施了一种基于简单3D模型的电磁淋浴的分析方法。实验。在本文中,该方法是通过附加的质量标准完成的,该标准可以在扩展源的情况下将背景污染降低约2倍,同时又可以将γ射线的效率保持在较高水平。另一方面,blazar PKS 2155-304在2006年7月的戏剧性耀斑为H.E.S.S.使用几乎纯净的伽马射线样品获得的数据,为3D重建方法以及H.E.S.S.的精确测试提供了独特的机会。校准中使用的模拟。在所有3D花洒参数的分布的数据和模拟之间都找到了百分之几的一致性。

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