首页> 外文期刊>Nature >An enhanced cosmic-ray flux towards zeta Persei inferred from a laboratory study of the H-3(+)-e(-) recombination rate
【24h】

An enhanced cosmic-ray flux towards zeta Persei inferred from a laboratory study of the H-3(+)-e(-) recombination rate

机译:根据H-3(+)-e(-)重组率的实验室研究推断,朝向Zeta Persei的宇宙射线通量增加

获取原文
获取原文并翻译 | 示例
       

摘要

The H-3(+) molecular ion plays a fundamental role in interstellar chemistry, as it initiates a network of chemical reactions that produce many molecules(1,2). In dense interstellar clouds, the H-3(+) abundance is understood using a simple chemical model, from which observations of H-3(+) yield valuable estimates of cloud path length, density and temperature(3,4). But observations of diffuse clouds have suggested that H-3(+) is considerably more abundant than expected from the chemical models(5-7). Models of diffuse clouds have, however, been hampered by the uncertain values of three key parameters: the rate of H-3(+) destruction by electrons (e(-)), the electron fraction, and the cosmic-ray ionization rate. Here we report a direct experimental measurement of the H-3(+) destruction rate under nearly interstellar conditions. We also report the observation of H-3(+) in a diffuse cloud ( towards zeta Persei) where the electron fraction is already known. From these, we find that the cosmic-ray ionization rate along this line of sight is 40 times faster than previously assumed. If such a high cosmic-ray flux is ubiquitous in diffuse clouds, the discrepancy between chemical models and the previous observations(5-7) of H-3(+) can be resolved. [References: 30]
机译:H-3(+)分子离子在星际化学中起着基本作用,因为它启动了产生许多分子的化学反应网络(1,2)。在密集的星际云中,使用简单的化学模型可以了解H-3(+)的丰度,从中可以观察到H-3(+)得出有价值的云路径长度,密度和温度估计值(3,4)。但是对弥漫云的观察表明,H-3(+)比化学模型所预期的要丰富得多(5-7)。但是,由于三个关键参数的不确定性值,使得扩散云模型受到了阻碍:三个H-3(+)被电子(e(-))破坏的速率,电子分数和宇宙射线电离速率。在这里,我们报告了在近星际条件下H-3(+)破坏率的直接实验测量。我们还报告了在已知电子分数的弥散云中(朝向Zeta Persei)观察到H-3(+)的现象。从这些发现中,我们发现沿着这条视线的宇宙射线电离速率比以前假定的快40倍。如果如此高的宇宙射线通量在弥漫云中无处不在,则可以解决化学模型与H-3(+)的先前观测值(5-7)之间的差异。 [参考:30]

著录项

相似文献

  • 外文文献
  • 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