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Composition of Interstellar Neutrals and the Origin of Anomalous Cosmic Rays

机译:星际中性的组成和异常宇宙射线的起源

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Knowledge of the elemental composition of the interstellar gas is of fundamental importance for understanding galactic chemical evolution. In addition to spectroscopic determinations of certain element abundance ratios, measurements of the composition of interstellar pickup ions and Anomalous Cosmic Rays (ACRs) have provided the principal means to obtain this critical information. Recent advances in our understanding of particle acceleration processes in the heliosphere and measurements by the Voyagers of the energy spectra and composition of energetic particles in the heliosheath provide us with another means of determining the abundance of the neutral components of the local interstellar gas. Here we compare the composition at the termination shock of six elements obtained from measurements of (a) pickup ions at similar to 5 AU, (b) ACRs in the heliosphere at similar to 70 AU, and (c) energetic particles as well as (d) ACRs in the heliosheath at similar to 100 AU. We find consistency among these four sets of derived neutral abundances. The average interstellar neutral densities at the termination shock for H, N, O, Ne and Ar are found to be 0.055 +/- 0.021 cm(-3), (1.44 +/- 0.45)x10(-5) cm(-3), (6.46 +/- 1.89)x10(-5) cm(-3), (8.5 +/- 3.3)x10(-6) cm(-3), and (1.08 +/- 0.49)x10(-7) cm(-3), respectively, assuming the He density is 0.0148 +/- 0.002 cm(-3).
机译:了解星际气体的元素组成对于理解银河系化学演化至关重要。除了对某些元素的丰度比进行光谱测定外,对星际吸收离子和异常宇宙射线(ACR)组成的测量还提供了获取这一关键信息的主要手段。我们对日球中粒子加速过程的了解以及旅行者对日鞘中能量谱和高能粒子组成的测量的最新进展为我们提供了另一种确定本地星际气体中性成分丰度的方法。在这里,我们比较了六种元素在终止冲击下的成分,这些元素是通过以下方式获得的:(a)类似于5 AU的拾取离子,(b)类似于70 AU的日光层中的ACR,以及(c)高能粒子以及( d)日鞘中的ACR接近100 AU。我们发现这四组导出的中性丰度之间具有一致性。 H,N,O,Ne和Ar终止电击时的平均星际中性密度为0.055 +/- 0.021 cm(-3),(1.44 +/- 0.45)x10(-5)cm(-3 ),(6.46 +/- 1.89)x10(-5)cm(-3),(8.5 +/- 3.3)x10(-6)cm(-3)和(1.08 +/- 0.49)x10(-7) ),假设He密度为0.0148 +/- 0.002 cm(-3)。

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