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Energy spectrum measured by the telescope array surface detector.

机译:望远镜阵列表面探测器测得的能谱。

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摘要

Two conflicting measurements of the ultra high energy cosmic ray (UHECR) flux have been reported by the Akeno Giant Air Shower Array (AGASA) and the High Resolution Fly's Eye (HiRes) experiments. HiRes observes a ∼5sigma suppression at E = 1019.75 eV, which is in agreement with the prediction of Greisen-Zatsepin-Kuz'min (GZK) theory. AGASA, in contrast, sees the flux extended well beyond E = 1020 eV with no visible break, suggesting that the flux is limited only by the rate at which the sources can produce the UHECR and not by interaction of energetic particles with the cosmic microwave background, thus challenging the relativistic invariance principle. In response to this discrepancy, a new experiment named the Telescope Array (TA) has been deployed, which combines the detection elements used separately by HiRes and AGASA.;We describe the TA surface detector (SD) analysis using a technique new to the field, which consists of a detailed Monte-Carlo (MC) simulation of the SD response to the natural cosmic rays, validating the MC by comparing its distributions with the data, and calculation of the SD aperture from the MC. We will also describe our reconstruction procedure, based solely upon the data, and its application to both data and the MC. Finally, we will describe the energy spectrum resulting from this analysis, which is found to be in excellent agreement with the HiRes result, and as such, is the first confirmation of the GZK effect by a ground array of scintillation counters.
机译:Akeno巨型空气淋浴阵列(AGASA)和高分辨率蝇眼(HiRes)实验已经报告了超高能宇宙射线(UHECR)通量的两个相互矛盾的测量结果。 HiRes在E = 1019.75 eV处观察到约5sigma抑制,这与Greisen-Zatsepin-Kuz'min(GZK)理论的预测相符。相比之下,AGASA看到通量扩展到E = 1020 eV以上,并且没有可见的破裂,这表明通量仅受源可产生UHECR的速率限制,而不受高能粒子与宇宙微波背景相互作用的限制,从而挑战了相对论不变性原理。针对这种差异,已部署了一个名为“望远镜阵列”(TA)的新实验,该实验结合了HiRes和AGASA分别使用的检测元件。我们使用该领域的新技术描述了TA表面探测器(SD)分析,其中包括SD对自然宇宙射线的响应的详细蒙特卡洛(MC)模拟,通过将其分布与数据进行比较来验证MC,以及通过MC计算SD孔径。我们还将仅根据数据描述其重建过程,并将其应用于数据和MC。最后,我们将描述由该分析得出的能谱,发现该谱与HiRes结果极为吻合,因此,这是通过地面闪烁计数器首次确认GZK效应。

著录项

  • 作者

    Ivanov, Dmitri.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Astronomy.;High energy physics.;Astrophysics.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 185 p.
  • 总页数 185
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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