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An excess of cosmic ray electrons at energies of 300-800 GeV

机译:能量超过300-800 GeV的宇宙射线电子过多

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Galactic cosmic rays consist of protons, electrons and ions, most of which are believed to be accelerated to relativistic speeds in supernova remnants. All components of the cosmic rays show an intensity that decreases as a power law with increasing energy (for example as E~(-2.7)). Electrons in particular lose energy rapidly through synchrotron and inverse Compton processes, resulting in a relatively short lifetime (about 10~5 years) and a rapidly falling intensity, which raises the possibility of seeing the contribution from individual nearby sources (less than one kiloparsec away). Here we report an excess of galactic cosmic-ray electrons at energies of ~ 300-800 GeV, which indicates a nearby source of energetic electrons. Such a source could be an unseen astrophysical object (such as a pulsar or micro-quasar) that accelerates electrons to those energies, or the electrons could arise from the annihilation of dark matter particles (such as a Kaluza-Klein particle with a mass of about 620 GeV).
机译:银河系宇宙射线由质子,电子和离子组成,据信其中大多数在超新星遗迹中被加速到相对论速度。宇宙射线的所有分量都显示出强度随幂次幂而降低的强度(例如,E〜(-2.7))。特别是电子通过同步加速器和逆康普顿过程迅速失去能量,从而导致相对较短的寿命(约10〜5年)和强度迅速下降,这增加了看到附近单个源(小于一千帕秒)的贡献的可能性。 )。在这里,我们报告了能量为300-800 GeV的过量银河宇宙射线电子,这表明附近有一个高能电子源。这样的源可能是一个看不见的天体物理物体(例如脉冲星或微类星体),它将电子加速为这些能量,或者电子可能是由于暗物质粒子(例如质量为Kaluza-Klein粒子)的an灭而产生的。约620 GeV)。

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