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Extremely-High-Energy Cosmic Rays:Prospects for Research with Space-Based Detectors

机译:极高能宇宙射线:天基探测器的研究前景

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摘要

The experimental study of high-energy cosmic rays at SINP is based on the legacy left by S.N. Vernov. An abrupt change (cutoff) of the cosmic-ray energy spectrum in the range of ultrahigh energies, ~5 × -10~(19) eV, was predicted in the works of Greisen—Zatsepin—Kuzmin (GZK). In these and in recent works, it was hypothe-sized that the shape of the spectrum beyond the GZK limit is related to the evolution of the Universe at the earliest stage of its development, which arouses special interest in studying such extremely high energies. At the same time, experimental study of cosmic-ray particles with such high energies encounters difficulties in connection with their extremely low intensity. To develop a method of particle detection on a maximum area of the order of the Earth's disk area, in recent years it has been suggested to move from ground-based to space-based detectors. The program of space experiments to study extremely-high-energy cosmic-ray particles is discussed.
机译:SINP对高能宇宙射线的实验研究是基于S.N. Vernov。在Greisen-Zatsepin-Kuzmin(GZK)的工作中预测了超高能〜5×-10〜(19)eV范围内的宇宙射线能谱的突然变化(截止)。在这些以及最近的著作中,都假设超出GZK极限的光谱形状与宇宙在其发展的最早阶段的演化有关,这引起了研究如此高能量的特殊兴趣。同时,具有如此高能量的宇宙射线粒子的实验研究由于其极低的强度而遇到困难。为了开发一种在地球盘面积最大数量级上进行粒子探测的方法,近年来,有人提出将其从地面探测器改为空间探测器。讨论了研究极高能宇宙射线粒子的空间实验程序。

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