论文标题
表征从旋转措施得出的集群磁场的不确定性
Characterizing the Uncertainty in Cluster Magnetic Fields derived from Rotation Measures
论文作者
论文摘要
磁场在群内介质(ICM)中起着至关重要的作用,但是估计观测值的优势和分布是一个主要挑战。法拉第旋转度量(RMS)广泛应用于此任务,因此了解RM分析中固有的不确定性至关重要。在本文中,鉴于当今可用的信息类型,我们试图表征这些不确定性,而与所使用的特定技术无关。我们通过从已知磁场的MHD宇宙学模拟中绘制的星系群的ICM进行合成RM观测。我们使用基于常用模型假设的分析形式主义分析合成的RM观测值,从而使我们能够将模型的物理变量联系起来以结果不确定性。尽管某些假设和未知的物理参数具有简单性,但我们能够在一个明显不可还原的不确定因素中提取中央磁场的大约大约3。原理,很大程度上是不可还能的,不确定性来自沿嵌入式范围的嵌入式范围,沿嵌入式延伸的范围,统一的统一范围的范围,是不明显的延伸,均不知的范围,这些范围是统一的统一范围。密度和磁场强度。 RM估计的中央磁场强度跨度超过一个数量级,包括整个合成实验。
Magnetic fields play vital roles in intracluster media (ICMs), but estimating their strengths and distributions from observations is a major challenge. Faraday rotation measures (RMs) are widely applied to this task, so it is critical to understand inherent uncertainties in RM analysis. In this paper, we seek to characterize those uncertainties given the types of information available today, independent of the specific technique used. We conduct synthetic RM observations through the ICM of a galaxy cluster drawn from an MHD cosmological simulation in which the magnetic field is known. We analyze the synthetic RM observations using an analytical formalism based on commonly used model assumptions allowing us to relate model physical variables to outcome uncertainties. Despite the simplicity of some assumptions, and unknown physical parameters, we are able to extract an approximate magnitude of the central magnetic field within an apparently irreducible uncertain factor approximately 3. Principal, largely irreducible, uncertainties come from the unknown depth along the line of sight of embedded polarized sources, the lack of robust coherence lengths from area-constrained polarization sampling, and the unknown scaling between ICM electron density and magnetic field strength. The RM-estimated central magnetic field strengths span more than an order of magnitude including the full range of synthetic experiments.