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Measurement of the cosmic electron plus positron spectrum with the MAGIC telescopes

机译:用魔法望远镜测量宇宙电子加正电子频谱

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Cosmic electrons with energies in the TeV range lose their energy rapidly through synchrotron radiation andinverse Compton processes, resulting in a relatively short lifetime ( 10 5 years). They are only visible from compara-tivelynearby sources (<1 kpc). Unexpected features in their spectrum at a few hundreds GeV, as measured by severalexperiments (ATIC, Fermi and H.E.S.S. among others), might be caused by local sources such as pulsars or by dark mat-terannihilation/decay. In order to investigate these possibilities, new measurements in the TeV energy region are needed.Since the completion of the stereo system, the MAGIC Cherenkov experiment is sensitive enough to measure the cosmicelectron flux between a few hundred GeV and few TeV. The electron signal has to be extracted from the overwhelmingbackground of hadronic cosmic rays estimated through Monte Carlo simulations. Here we present the first results of thecosmic electron spectrum measured with the MAGIC telescopes.
机译:TEV中具有能量的宇宙电子频率迅速通过同步辐射和康普顿工艺迅速失去能量,导致相对较短的寿命(10 5年)。它们只能从比较终止(<1 kpc)可见。它们的光谱意外特征在几百个GEV中,由几个实验(ATIC,FERMI和H.S.S.等)测量,可能是由Pulsar等局部来源引起的,如脉冲星或暗垫 - 特兰尼池/衰变。为了调查这些可能性,需要在TEV能源区的新测量.Since完成立体声系统,魔术Cherenkov实验足够敏感,以测量几百GEV和少数TEV之间的宇宙电量。必须从通过蒙特卡罗模拟估计的Repronic宇宙射线的压倒性地图中提取电子信号。在这里,我们介绍了用魔法望远镜测量的Thecosmic电子谱的第一个结果。

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