Turbulent magnetic field in the HII region Sh 2-27
N. C. Raycheva, M. Haverkorn, S. Ideguchi, J. M. Stil, B. M. Gaensler,, X. Sun, J. L. Han, E. Carretti, X. Y. Gao, T. Wijte

TL;DR
This study investigates the turbulent magnetic field in the HII region Sh 2-27 using Faraday rotation and Hα observations, revealing properties consistent with Kolmogorov turbulence and suggesting an outer scale of at least 10 parsecs.
Contribution
First measurement of the magnetic field strength along the line of sight in Sh 2-27, analyzing its turbulent properties and scaling behavior compared to Kolmogorov turbulence.
Findings
Median magnetic field strength is about -4.5 μG.
The structure function slope is slightly steeper than Kolmogorov.
Outer scale of turbulence is estimated to be at least 10 parsecs.
Abstract
Magnetic fields in the turbulent interstellar medium (ISM) are a key element in understanding Galactic dynamics, but there are many observational challenges. One useful probe for studying the magnetic field component parallel to the line of sight (LoS) is Faraday rotation of linearly polarized radio synchrotron emission, combined with H observations. HII regions are the perfect laboratories to probe such magnetic fields as they are localized in space, and are well-defined sources often with known distances and measurable electron densities. We chose the HII region Sharpless 2-27 (Sh 2-27). By using a map of the magnetic field strength along the LoS () for the first time, we investigate the basic statistical properties of the turbulent magnetic field inside Sh 2-27. We study the scaling of the magnetic field fluctuations, compare it to the Kolmogorov scaling, and…
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