论文标题

银河湍流发电机的观察信号

Observational Signatures of Galactic Turbulent Dynamos

论文作者

Carteret, Yann, Bendre, Abhijit B., Schober, Jennifer

论文摘要

我们通过超新星(SN)爆炸和差异旋转驱动的湍流分析了银河磁场的观察性特征,这些磁场的观察性特征是在星际培养基的磁性流体动力学模拟中产生的。特别是,我们通过表征观测平面中形成的典型结构来研究法拉第旋转度量(RM),同步辐射和Stokes参数的时间演变。我们通过为热射线和宇宙射线(CR)电子分布定义两个不同的模型来做到这一点。我们的结果表明,RM的地图具有通过差异旋转剪切和呈现各向异性的结构,它们取决于热电子模型的选择以及SN速率。同步加速器图在质量上与沿视线线的平均磁场图相似,而结构仅受CR模型的略有影响。 Stokes参数和相关量(例如线性极化程度)高度取决于观察的频率和分辨率。

We analyse the observational signatures of galactic magnetic fields that are self-consistently generated in magnetohydrodynamic simulations of the interstellar medium through turbulence driven by supernova (SN) explosions and differential rotation. In particular, we study the time evolution of the Faraday rotation measure (RM), synchrotron radiation, and Stokes parameters by characterising the typical structures formed in the plane of observation. We do this by defining two distinct models for both thermal and cosmic ray (CR) electron distributions. Our results indicate that the maps of RM have structures which are sheared and rendered anisotropically by differential rotation and that they depend on the choice of thermal electrons model as well as the SN rate. Synchrotron maps are qualitatively similar to the maps of the mean magnetic field along the line of sight and structures are only marginally affected by the CR model. Stokes parameters and related quantities, such as the degree of linear polarisation, are highly dependent on both frequency and resolution of the observation.

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