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An Anomalous Positron Abundance In Cosmic Rays With Energies 1.5-100 Gev

机译:1.5-100 Gev能量的宇宙射线中的正电子异常丰度

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Antiparticles account for a small fraction of cosmic rays and are known to be produced in interactions between cosmic-ray nuclei and atoms in the interstellar medium, which is referred to as a 'secondary source'. Positrons might also originate in objects such as pulsars and microquasars3or through dark matter annihilation, which would be 'primary sources'. Previous statistically limited measurements of the ratio of positron and electron fluxes have been interpreted as evidence for a primary source for the positrons, as has an increase in the total electron+positron flux at energies between 300 and 600 GeV (ref. 8). Here we report a measurement of the positron fraction in the energy range 1.5-100 GeV. We find that the positron fraction increases sharply over much of that range, in a way that appears to be completely inconsistent with secondary sources. We therefore conclude that a primary source, be it an astrophysical object or dark matter annihilation, is necessary.
机译:反粒子占宇宙射线的一小部分,并且已知是在宇宙射线核与星际介质中原子之间的相互作用中产生的,这被称为“次生源”。正电子也可能起源于诸如脉冲星和微类星体之类的物体,或者通过暗物质an灭而产生,这将是“主要来源”。先前统计上对正电子与电子通量之比的测量有限,已被解释为正电子的主要来源的证据,在300至600 GeV的能量下,总电子+正电子通量也有所增加(参考文献8)。在这里,我们报告了在1.5-100 GeV能量范围内对正电子分数的测量。我们发现,正电子分数在该范围的大部分中急剧增加,这似乎与次级来源完全不一致。因此,我们得出结论,有必要将其作为主要来源,无论是天体物理物体还是暗物质matter灭。

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