论文标题

使用双无线电遗物的极化特性来探测湍流压缩方案

Using the polarization properties of double radio relics to probe the turbulent compression scenario

论文作者

Stuardi, C., Bonafede, A., Rajpurohit, K., Brüggen, M., de Gasperin, F., Hoang, D., van Weeren, R. J., Vazza, F.

论文摘要

无线电文物是位于一些合并星系簇的郊区的MPC大小同步源。具有良好方向的二进制二进制系统可以主持两个几乎对称的文物,称为双重无线电文物。双向无线电文物优先看到边缘,因此构成了统计研究的特权样本。它们的极化和法拉第旋转特性可直接访问遗物的起源和磁场。在本文中,我们介绍了托管双无线电遗物的四个群集的极化和旋转度量(RM)合成研究,即8C 0212+703,Abell 3365,PLCK G287.0+32.9,以前缺失极化研究和ZWCL 2341+0000,据报道,这是有矛盾的结果。我们使用了1-2 GHz Karl G. Jansky非常大的阵列观测值。我们还提供了具有重要观察量的已知双无线电文物的更新汇编。我们研究了它们的极化和Faraday旋转特性在1.4 GHz,我们搜索了分数极化和物理分辨率,距离群集中心的距离和冲击马赫数之间的相关性。这些数量之间发现的弱相关性是通过无线电遗物的最新磁磁动力模拟来很好地再现的,这证实了合并冲击波在具有缠结磁场的湍流介质中传播。外部和内部法拉第去极化都应在确定无线电遗物的极化特性为1.4 GHz时起着基本作用。尽管带有RM信息的双收音机数量仍然很少,但它们的法拉第旋转属性(即,在40 rad m $^{ - 2} $和非高斯rm分布中,其静止rm和rm分散量低于40 rad m $^{-2} $,也可以在这种情况下进行解释,在这种情况下,在这种情况下,沿着2.5个沿着2.5层的震惊浪潮,沿着2.5的浪潮沿着天空的平面播放,并且是the Sky of Sky of Sky of the Sky of the Sky offers Intera的媒介。

Radio relics are Mpc-size synchrotron sources located in the outskirts of some merging galaxy clusters. Binary-merging systems with favorable orientation may host two almost symmetric relics, named double radio relics. Double radio relics are seen preferentially edge-on and, thus, constitute a privileged sample for statistical studies. Their polarization and Faraday rotation properties give direct access to the relics origin and magnetic fields. In this paper, we present a polarization and Rotation Measure (RM) synthesis study of four clusters hosting double radio relics, namely 8C 0212+703, Abell 3365, PLCK G287.0+32.9, previously missing polarization studies, and ZwCl 2341+0000, for which conflicting results have been reported. We used 1-2 GHz Karl G. Jansky Very Large Array observations. We also provide an updated compilation of known double radio relics with important observed quantities. We studied their polarization and Faraday rotation properties at 1.4 GHz and we searched for correlations between fractional polarization and physical resolution, distance from the cluster center, and shock Mach number. The weak correlations found between these quantities are well reproduced by state-of-the-art magneto-hydrodynamical simulations of radio relics, confirming that merger shock waves propagate in a turbulent medium with tangled magnetic fields. Both external and internal Faraday depolarization should play a fundamental role in determining the polarization properties of radio relics at 1.4 GHz. Although the number of double radio relics with RM information is still low, their Faraday rotation properties (i.e., rest-frame RM and RM dispersion below 40 rad m$^{-2}$ and non-Gaussian RM distribution) can be explained in the scenario in which shock waves with Mach numbers larger than 2.5 propagate along the plane of the sky and compress the turbulent intra-cluster medium.

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