论文标题
椭圆星系中的磁场:波动发动机的观察探针
Magnetic fields in elliptical galaxies: an observational probe of the fluctuation dynamo action
论文作者
论文摘要
波动的发电机被认为在磁化星系演化中起着至关重要的作用,在$ \ sim0.01〜 $ gyr中饱和,因此有可能充当大型发电机的种子。但是,在银河环境中对波动发电机作用的明确观察性确认仍然缺失。这是因为,在螺旋星系中,很难区分由波动的发电机产生的小规模磁场和由于大型场缠结而产生的小磁场。我们建议对椭圆星系中磁场的观察将直接探测波动的发电机。这是由于在椭圆机缺乏明显旋转的情况下,没有传统的大规模发电机,并且波动的发电机负责控制磁场强度和结构。通过考虑由IA型超新星爆炸注入的湍流和通过冷却流进行的可能的磁场扩增,我们估计静态椭圆星系中的预期磁场强度为$ 0.2〜-〜1 \,μ{\ rm G} $。我们使用星系形成的半分析模型来估计田间强度的分布和红移演化,并暂时发现磁场强度的降低,而红移的降低。我们分析了表现出Laing-Garrington(LG)效果(JET中的无线电极化不对称)的无线电来源样本,并推断磁场强度在$ 0.14〜-〜1.33 \,μ{\ rm G} $中,用于均匀的热电密度和$ 1.36〜6.21 \ 6.21 \ y的均匀的热量范围,以下是$ g,giron for Mental for for Menth for thermenty。我们研究了用于测量椭圆星系中磁场饱和状态的观察技术,重点是法拉第RM网格,LG效应,同步加速器发射和重力镜头,为未来的经验分析找到了吸引人的前景。
Fluctuation dynamos are thought to play an essential role in magnetized galaxy evolution, saturating within $\sim0.01~$Gyr and thus potentially acting as seeds for large-scale dynamos. However, unambiguous observational confirmation of the fluctuation dynamo action in a galactic environment is still missing. This is because, in spiral galaxies, it is difficult to differentiate between small-scale magnetic fields generated by a fluctuation dynamo and those due to the tangling of the large-scale field. We propose that observations of magnetic fields in elliptical galaxies would directly probe the fluctuation dynamo action. This is motivated by the fact that in ellipticals, due to their lack of significant rotation, the conventional large-scale dynamo is absent and the fluctuation dynamo is responsible for controlling the magnetic field strength and structure. By considering turbulence injected by Type Ia supernova explosions and possible magnetic field amplification by cooling flows, we estimate expected magnetic field strengths of $0.2~-~1 \,μ{\rm G}$ in quiescent elliptical galaxies. We use a semi-analytic model of galaxy formation to estimate the distribution and redshift evolution of field strengths, tentatively finding a decrease in magnetic field strength with decreasing redshift. We analyse a sample of radio sources that exhibit the Laing-Garrington (LG) effect (radio polarization asymmetry in jets) and infer magnetic field strengths between $0.14~-~1.33 \,μ{\rm G}$ for a uniform thermal electron density and between $1.36~-~6.21\,μ{\rm G}$ for the thermal electron density following the King profile. We examine observational techniques for measuring the magnetic field saturation state in elliptical galaxies, focusing on Faraday RM grids, the LG effect, synchrotron emission, and gravitational lensing, finding appealing prospects for future empirical analysis.