...
首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >The fate of ultrahigh energy nuclei in the immediate environment of young fast-rotating pulsars
【24h】

The fate of ultrahigh energy nuclei in the immediate environment of young fast-rotating pulsars

机译:超高能核在年轻的快速旋转脉冲星附近环境中的命运

获取原文
获取原文并翻译 | 示例
           

摘要

Young, fast-rotating neutron stars are promising candidate sources for the production of ultrahigh energy cosmic rays (UHECRs). The interest in this model has recently been boosted by the latest chemical composition measurements of cosmic rays, that seem to show the presence of a heavy nuclear component at the highest energies. Neutrons stars, with their metal-rich surfaces, are potentially interesting sources of such nuclei, but some open issues remain: 1) is it possible to extract these nuclei from the star's surface? 2) Do the nuclei survive the severe conditions present in the magnetosphere of the neutron star? 3) What happens to the surviving nuclei once they enter the wind that is launched outside the light cylinder? In this paper we address these issues in a quantitative way, proving that for the most reasonable range of neutron star surface temperatures (T < 10(7) K), a large fraction of heavy nuclei survive photo-disintegration losses. These processes, together with curvature losses and acceleration in the star's electric potential, lead to injection of nuclei with a chemical composition that is mixed, even if only iron is extracted from the surface. We show that under certain conditions the chemical composition injected into the wind region is compatible with that required in previous work based on purely phenomenological arguments (typically similar to 50% protons, similar to 30% CNO and similar to 20% Fe), and provides a reasonable explanation of the mass abundance inferred from ultra high energy data.
机译:年轻,快速旋转的中子星是产生超高能宇宙射线(UHECR)的有希望的候选来源。最近,通过最新的宇宙射线化学成分测量,人们对这种模型的兴趣增强了,这似乎表明在最高能量下存在重核成分。具有丰富金属表面的中子星可能是这类核的有趣来源,但仍有一些未解决的问题:1)是否有可能从恒星表面提取这些核? 2)原子核能在中子星磁层存在的严酷条件下生存吗? 3)存活的原子核进入进入光圆柱外的风后会发生什么变化?在本文中,我们以定量的方式解决了这些问题,证明了在最合理的中子星表面温度范围(T <10(7)K)中,很大一部分重核都承受了光崩解损失。这些过程,连同曲率损失和恒星电位的加速,导致注入具有混合化学成分的核,即使仅从表面提取铁也是如此。我们证明,在某些条件下,注入风区的化学成分与以前基于纯现象学论证(通常类似于50%质子,类似于30%CNO和类似于20%Fe)的工作所要求的相容,并且提供了从超高能量数据推断出的质量丰度的合理解释。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号