论文标题
湍流的通用银河kolmogorov速度级联超过6年
Turbulent universal galactic Kolmogorov velocity cascade over 6 decades
论文作者
论文摘要
我们报告了存在速度波动的通用,连续的湍流级联的证据。这是通过将我们的创新技术应用于将密度和速度波动分离到具有各种银河光谱线的一组光谱调查的创新技术。这种统一的速度级联反应涉及从弥漫性银河培养基到尽管星际相变的密集自我散热云的不同星际阶段。但是,由于不同星际相变的频谱斜率变化,湍流的波动并未显示出这种普遍性。这与对可压缩湍流理论的期望一致,并证明密度只是星际湍流的间接示踪剂。我们报告说,优先平行于磁场的云和细丝的密度波动表现出-2的光谱斜率。我们论文中建立的通用大湍流速度级联对关键的银河物理过程具有重要意义,包括星形形成,宇宙射线传输等。我们预计我们的结果将成为多相星际湍流研究的体外模型的起点,对螺旋星系建模具有重大影响。
We report the evidence for the existence of the universal, continuous turbulent cascade of velocity fluctuations with Kolmogorov -5/3 slope spanning 6 orders of length scales, from $10^4$ pc down to $10^{-2}$ pc. This was achieved by applying our innovative technique of separating density and velocity fluctuations to a set of spectroscopic surveys featuring various galactic spectral lines. This unified velocity cascade involves different interstellar phases from diffuse galactic media to dense self-gravitating clouds and persists despite interstellar phase transitions. However, the turbulent density fluctuations do not show this universality as the value of the spectral slope changes in different interstellar phases. This agrees with the expectation of compressible turbulence theory and demonstrates that the density is only an indirect tracer of interstellar turbulence. We report that the density fluctuations for clouds and filaments that are preferentially parallel to magnetic fields exhibit the spectral slope of -2. The universal grand turbulent velocity cascade that is established in our paper has significant implications for key galactic physical processes, including star formation, cosmic ray transport etc. We anticipate our result to be a starting point for in vitro models of multiphase interstellar turbulence studies with a significant impact for modeling of spiral galaxies.