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Using fractal dimensionality in the search for source models of ultra-high energy cosmic rays

机译:使用分形维数搜索超高能宇宙射线源模型

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Although the existence of cosmic rays with energies extending well above 10(19) eV has been confirmed, their origin remains one of the most important questions in astro-particle physics today. Several source models have been proposed for the observed set of ultra high energy cosmic rays (UHECRs). Yet none of these models have been conclusively identified as corresponding with all of the available data. One possible way of achieving a global test of anisotropy is through the measurement of the information dimension, D-I, of the arrival directions of a sample of events. D-I is a measure of the intrinsic heterogeneity of a data sample. We will show how this method can be used to take into account the extreme asymmetric angular resolution and the highly irregular aperture of a monocular air-fluorescence detector. We will then use a simulated, isotropic event sample to show how this method can be used to place upper limits on any number of source models with no statistical penalty. (C) 2004 Elsevier B.V. All rights reserved.
机译:尽管已经证实存在能量远超过10(19)eV的宇宙射线,但它们的起源仍然是当今天体粒子物理学中最重要的问题之一。对于观测到的超高能宇宙射线(UHECR),已经提出了几种源模型。然而,这些模型都没有最终被确定为与所有可用数据相对应。实现各向异性的整体测试的一种可能方法是通过测量事件样本的到达方向的信息维D-I。 D-I是数据样本固有异质性的度量。我们将展示如何使用这种方法来考虑单眼空气荧光检测器的极端不对称角分辨率和高度不规则孔径。然后,我们将使用模拟的各向同性事件样本来说明如何使用此方法在任何数量的源模型上设置上限,而不会造成统计损失。 (C)2004 Elsevier B.V.保留所有权利。

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