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Cosmic rays in the knee energy range

机译:膝盖能量范围内的宇宙射线

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In the energy range of the so called 'knee' between 100 TeV and 1 EeV one expects to identify the end of the galactic origin of cosmic rays. Only for the lowest energies a direct detection with instruments on high-altitude, long-flying balloons are possible. Measurements of the high-energy particles are performed indirectly via the detection of extensive air showers by extended arrays of particle or Cherenkov light sensitive detectors. Multidimensional analyses of the air shower data indicate a distinct knee in the energy spectra of light primary cosmic rays at few PeV and an increasing dominance of heavy ones towards higher energies. This provides implications for discriminating astrophysical models of the origin of the knee and of the physics of the transition from galactic to extragalactic cosmic ray origin. Where around 1 PeV many experiments were in operation and have given valuable results in the last decade, at higher energies there was a lack of experimental efforts. To improve the reconstruction quality and statistics at energies from 10 to 1000 PeV, where the transition can be expected, presently several experiments are in operation or going to be in operation. First results of these experiments, as well as perspectives of future efforts in this energy range will be discussed.
机译:在所谓的“膝盖”的能量范围内,介于100 TeV和1 EeV之间,人们期望识别出宇宙射线的银河系起源的终点。仅在能量最低的情况下,才可以在高空,长距离飞行的气球上直接检测仪器。高能粒子的测量是通过扩展的粒子阵列或Cherenkov光敏探测器检测广泛的空气阵雨而间接进行的。空气淋浴数据的多维分析表明,在几倍PeV的光下主要宇宙射线的能量谱中有明显的拐点,而较重的宇宙射线对较高能量的支配性却在增加。这为区分膝盖起源和从银河系到银河系宇宙射线起源的过渡物理学的天体模型提供了启示。在大约1 PeV的情况下,许多实验正在进行中,并在过去十年中取得了可贵的结果,但在更高的能量下,缺乏实验努力。为了提高在10到1000 PeV的能量处的重建质量和统计数据,可以预期会发生过渡,目前正在进行或将要进行一些实验。将讨论这些实验的初步结果以及该能源范围内未来工作的前景。

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