论文标题

磁化银盘模拟中的旋转度量和同步发射特征

Rotation measure and synchrotron emission signatures in simulations of magnetized galactic discs

论文作者

Rappaz, Yoan, Schober, Jennifer, Girichidis, Philipp

论文摘要

我们分析了磁场的观察性特征,以模拟具有超新星驱动的星际湍流和自洽化学过程的乳光盘。特别是,我们在SILCC项目的两个模拟数据集中进行了两个磁场初始幅度的模拟数据集,$ b_0 = $ 3和6 $μ$ g,以研究法拉第旋转措施(RM)和同步亮度的演变。为了计算RM,考虑了三种不同的电子密度$ n_e $的模型。分别基于离子化物质的密度和总气体的比例的恒定电子密度和两个估计。我们的结果表明,RM轮廓对$ N_E $模型非常敏感,该模型评估了使用Faraday RMS探测的准确电子分布观测值/估计值的重要性。作为磁场的第二个可观察到的,我们使用半分析宇宙射线模型估算了模拟中模拟中的同步子光度。我们发现同步子发光度随着时间的推移而降低,这与模拟中的磁能衰减有关。磁性,宇宙射线和热能密度之间的比率表明,ISM的大多数区域的均衡假设无法保持。特别是,对于宇宙射线与磁能的比率,设备的假设可能导致对观察到的同步加速器发射的错误解释。

We analyse observational signatures of magnetic fields for simulations of a Milky-Way like disc with supernova-driven interstellar turbulence and self-consistent chemical processes. In particular, we post-process two simulations data sets of the SILCC Project for two initial amplitudes of the magnetic field, $B_0 = $ 3 and 6 $μ$G, to study the evolution of Faraday rotation measures (RM) and synchrotron luminosity. For calculating the RM, three different models of the electron density $n_e$ are considered. A constant electron density, and two estimations based on the density of ionized species and the fraction of the total gas, respectively. Our results show that the RM profiles are extremely sensitive to the $n_e$ models, which assesses the importance of accurate electron distribution observations/estimations for the magnetic fields to be probed using Faraday RMs. As a second observable of the magnetic field, we estimate the synchrotron luminosity in the simulations using a semi-analytical cosmic ray model. We find that the synchrotron luminosity decreases over time, which is connected to the decay of magnetic energy in the simulations. The ratios between the magnetic, the cosmic ray, and the thermal energy density indicate that the assumption of equipartition does not hold for most regions of the ISM. In particular, for the ratio of the cosmic ray to the magnetic energy the assumption of equipatition could lead to a wrong interpretation of the observed synchrotron emission.

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