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质子主导的宇宙射线成分在 1.6EeV 以上的指示。

Indications of proton-dominated cosmic-ray composition above 1.6 EeV.

机构信息

Department of Physics, University of Utah, Salt Lake City, Utah, USA.

出版信息

Phys Rev Lett. 2010 Apr 23;104(16):161101. doi: 10.1103/PhysRevLett.104.161101. Epub 2010 Apr 20.

Abstract

We report studies of ultrahigh-energy cosmic-ray composition via analysis of depth of air shower maximum (X(max)), for air shower events collected by the High-Resolution Fly's Eye (HiRes) observatory. The HiRes data are consistent with a constant elongation rate d<X(max)>/d[log(E)] of 47.9+/-6.0(stat)+/-3.2(syst) g/cm2/decade for energies between 1.6 and 63 EeV, and are consistent with a predominantly protonic composition of cosmic rays when interpreted via the QGSJET01 and QGSJET-II high-energy hadronic interaction models. These measurements constrain models in which the galactic-to-extragalactic transition is the cause of the energy spectrum ankle at 4x10(18) eV.

摘要

我们报告了通过分析超高能宇宙射线簇射的最大深度(Xmax)来研究宇宙射线成分的研究结果,这些簇射事件是由高分辨率 Fly's Eye(HiRes)观测站收集的。HiRes 数据与能量在 1.6 到 63 EeV 之间的情况下,Xmax 的延伸率 d/d[log(E)]为 47.9+/-6.0(stat)+/-3.2(syst) g/cm2/decade 的常数一致,并且当通过 QGSJET01 和 QGSJET-II 高能强子相互作用模型进行解释时,与宇宙射线的主要质子组成一致。这些测量结果限制了那些认为银河系到河外过渡是造成 4x10(18) eV 能谱拐点的模型。

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