论文标题

使用Illustristng模拟,对原始磁场上法拉第旋转措施约束的修订

Revision of Faraday rotation measure constraints on the primordial magnetic field using the IllustrisTNG simulation

论文作者

Aramburo-Garcia, Andres, Bondarenko, Kyrylo, Boyarsky, Alexey, Neronov, Andrii, Scaife, Anna, Sokolenko, Anastasia

论文摘要

先前衍生的法拉第旋转约束在体积填充层间磁场(IGMF)上使用了分析模型,这些模型对播层间介质中的一系列简化假设进行了简化的假设,并且没有考虑Baryonic反馈对大型结构的影响。在这项工作中,我们使用Illainistng宇宙学仿真的数字模型修改了IGMF上的Faraday旋转约束,其中包括Baryonic反馈的复杂模型。我们使用Illustristng模型来计算旋转度量,并比较旋转度量的绝对值的结果平均值和中位数与NRAO VLA SKY SUMPER(NVSS)的数据。播层间介质的数值模型包括压缩原始磁场的完整磁力流动力模型,以及磁场不是原始的区域的模型,而是由Baryonic反馈过程产生的。将这两种类型的区域分开,我们能够评估原始磁场对法拉第旋转信号的影响。我们发现,通过纠正压缩原始场的区域,并考虑了一个事实,即一部分播层介质被重型反馈过程传播的磁场所占据,而不是由原始场放松,而Faraday旋转受到$ \ \ simeq 3 $的限制的法拉第旋转。对于大相关长度IGMFS,这将导致$ b_0 <1.8 \ times10^{ - 9} $ g。

Previously derived Faraday rotation constraints on the volume-filling intergalactic magnetic field (IGMF) have used analytic models that made a range of simplifying assumptions about magnetic field evolution in the intergalactic medium and did not consider the effect of baryonic feedback on large-scale structures. In this work we revise existing Faraday rotation constraints on the IGMF using a numerical model of the intergalactic medium from the IllustrisTNG cosmological simulation that includes a sophisticated model of the baryonic feedback. We use the IllustrisTNG model to calculate the rotation measure and compare the resulting mean and median of the absolute value of the rotation measure with data from the NRAO VLA Sky Survey (NVSS). The numerical model of the intergalactic medium includes a full magneto-hydrodynamic model of the compressed primordial magnetic field as well as a model of the regions where the magnetic field is not primordial, but is rather produced by the process of baryonic feedback. Separating these two types of regions, we are able to assess the influence of the primordial magnetic field on the Faraday rotation signal. We find that by correcting for regions of compressed primordial field and accounting for the fact that part of the intergalactic medium is occupied by magnetic fields spread by baryonic feedback processes rather than by the primordial field relaxes the Faraday rotation bound by a factor of $\simeq 3$. This results in $B_0<1.8\times10^{-9}$ G for large correlation length IGMFs.

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