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A cosmic-ray composition controlled by volatility and A/Q ratio. SNR shock acceleration of gas and dust [Review]

机译:由挥发性和A ​​/ Q比控制的宇宙射线组成。气体和粉尘的SNR冲击加速度[综述​​]

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摘要

The composition of Galactic Cosmic Ray Sources (GCRS) shows. the following features: (i) an enhancement of the refractory elements relative to the Volatile ones, and (ii) an enhancement of the heavier volatile elements relative to the lighter ones; this mass dependence should reflect a mass-to-charge (A/Q) dependence of the acceleration efficiency; among the refractory elements, there is only a very weak enhancement of heavier species, or none at all. We consider it fortuitous that the GCRS composition resembles that of the solar corona, which is biased according to first ionization potential. In a companion paper by Ellison et al. (1998, this issue), this GCRS composition is interpreted in terms of a supernova shock wave acceleration of interstellar and/or circumstellar (e.g., Ne-22-rich Wolf-Rayet wind) gas phase and especially dust grain material. These two papers summarize and complement the content of two papers that recently appeared in Astrophys. J. (Meyer et al., 1997; Ellison et al., 1997). [References: 84]
机译:显示了银河宇宙射线源(GCRS)的组成。具有以下特征:(i)相对于易挥发元素增强了耐火元素,并且(ii)相对于较轻元素增强了较重的挥发性元素;这种质量依赖性应反映出加速效率的质量电荷比(A / Q);在耐火元素中,只有较重的物种增强非常弱,或者根本没有。我们很幸运,GCRS的组成类似于太阳电晕的组成,后者根据第一电离电势而偏置。在Ellison等人的随笔中。 (1998年,本期),根据星际和/或星际(例如富含Ne-22的Wolf-Rayet风)气相尤其是粉尘颗粒物质的超新星冲击波加速度来解释GCRS的组成。这两篇论文总结并补充了最近出现在Astrophys中的两篇论文的内容。 J.(Meyer等,1997; Ellison等,1997)。 [参考:84]

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