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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >On the potential of the imaging atmospheric Cherenkov technique for study of the mass composition of primary cosmic radiation in the energy region above 30 TeV
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On the potential of the imaging atmospheric Cherenkov technique for study of the mass composition of primary cosmic radiation in the energy region above 30 TeV

机译:大气Cherenkov成像技术研究30 TeV以上能量区一次宇宙辐射质量组成的潜力。

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摘要

The technique of imaging atmospheric Cherenkov telescopes (IACTs) has proved to be an effective tool to register cosmic γ-rays in the very high energy region. The high detection rate of the IACT technique and its capability to reconstruct accurately the air shower parameters make it attractive to use this technique for the study of the mass composition of cosmic rays (CRs). In this article we suggest a new approach to study the CR mass composition in the energy region from 30 TeVucleus up to the "knee" region, I.e. Up to a few PeVucleus, using an array of imaging telescopes of a special architecture. This array consists of telescopes with a relatively small mirror size (~10 m~2) separated from each other by large distances (~500 m) and equipped by multi-channel cameras with a modest pixel size (0.3-0.5°) and a sufficiently large viewing angle (6-7°). Compared to traditional IACT systems (like HEGRA, HESS or VERITAS) the IACT array considered in this study could provide a very large detection area (several km~2 or more). At the same time, it allows an accurate measurement of the energy of CR-induced air showers (the energy resolution ranges within 25-35%) and an effective separation of air showers created by different nuclei. Particularly, it is possible to enrich air showers belonging to the nucleus group assigned for selection up to ~90% purity at a detection efficiency of 15-20% of such showers.
机译:事实证明,对大气Cherenkov望远镜(IACT)进行成像的技术是在非常高的能量区域记录宇宙γ射线的有效工具。 IACT技术的高检出率及其准确重建空气喷淋参数的能力使得将这种技术用于研究宇宙射线(CR)的质量组成具有吸引力。在本文中,我们提出了一种新的方法来研究从30 TeV /原子核到“膝盖”区域即能量区域的CR质量组成。使用特殊结构的成像望远镜阵列,最多可达到几个PeV /核。该阵列由镜面相对较小(〜10 m〜2)的望远镜组成,它们彼此隔开较大的距离(〜500 m),并配有像素大小适中(0.3-0.5°)的多通道相机,足够大的视角(6-7°)。与传统的IACT系统(如HEGRA,HESS或VERITAS)相比,本研究中考虑的IACT阵列可以提供非常大的检测区域(几km〜2或更大)。时间,它可以精确地测量CR诱导的风淋的能量(能量分辨率在25%至35%之间),并且可以有效分离由不同原子核产生的风淋,特别是可以丰富属于被指定用于选择纯度高达〜90%的原子团,其检测效率为此类喷淋的15-20%。

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