...
首页> 外文期刊>Advances in Astronomy >Cosmic Rays Report from the Structure of Space
【24h】

Cosmic Rays Report from the Structure of Space

机译:空间结构的宇宙射线报告

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Spectrum of cosmic rays follows a broken power law over twelve orders of magnitude. Since ubiquitous power laws are manifestations of the principle of least action, we interpret the spectrum accordingly. Our analysis complies with understanding that low-energy particles originate mostly from rapidly receding sources throughout the cosmos. The flux peaks about proton rest energy whereafter it decreases because fewer and fewer receding sources are energetic enough to provide particles with high enough velocities to compensate for the recessional velocities. Above 1015.6 eV the flux from the expanding Universe diminishes below the flux from the nearby nonexpanding part of the Universe. In this spectral feature, known as the “knee,” we relate to a distance of about 1.3 Mpc where the gravitational potential tallies the energy density of free space. At higher energies particles decelerate in a dissipative manner to attain thermodynamic balance with the vacuum. At about 1017.2 eV a distinct dissipative mechanism opens up for protons to slow down by electron-positron pair production. At about 1019.6 eV a more effective mechanism opens up via pion production. All in all, the universal principle discloses that the broad spectrum of cosmic rays probes the structure of space from cosmic distances down to microscopic details.
机译:宇宙射线的光谱在十二个数量级上遵循打破的幂定律。由于无处不在的幂定律是最小作用原理的体现,因此我们对频谱进行了相应的解释。我们的分析符合以下认识:低能粒子主要源自整个宇宙中快速消退的能源。质子静息能量的通量达到峰值,此后它就减少了,因为越来越少的后退源具有足够的能量以提供具有足够高速度以补偿后退速度的粒子。高于1015.6 eV,来自膨胀宇宙的通量减小到低于来自附近宇宙的非膨胀部分的通量。在这种被称为“膝盖”的光谱特征中,我们涉及的距离约为1.3 Mpc,其中引力势能计算自由空间的能量密度。在较高的能量下,粒子以耗散的方式减速以达到与真空的热力学平衡。在约1017.2 eV处,一个独特的耗散机制为质子通过电子-正电子对的产生而放慢了速度。在约1019.6 eV处,通过介子的产生打开了一个更有效的机制。总而言之,通用原理公开了宇宙射线的广谱探测从宇宙距离到微观细节的空间结构。

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