A Comparison of Multi-Phase Magnetic Field Tracers in a High-Galactic Latitude Region of the Filamentary Interstellar Medium
J. L. Campbell, S. E. Clark, B. M. Gaensler, A. Marchal, C. L. Van, Eck, A. A. Deshpande, S. J. George, S. J. Gibson, R. Ricci, J. M. Stil, A. R., Taylor

TL;DR
This study compares magnetic field tracers in different phases of the interstellar medium at high galactic latitudes, revealing a likely shared magnetic field in a specific region through multi-tracer analysis.
Contribution
It demonstrates the first evidence of a common magnetic field in both ionized and neutral ISM phases using combined polarization and HI data in a high-latitude region.
Findings
Identified a region with aligned polarization gradient filaments and HI structures.
Measured a line-of-sight magnetic field strength of 6±4 μG.
Found limited widespread multi-phase magnetic field alignment.
Abstract
Understanding how the Galactic magnetic field threads the multi-phase interstellar medium (ISM) remains a considerable challenge, as different magnetic field tracers probe dissimilar phases and field components. We search for evidence of a common magnetic field shared between the ionized and neutral ISM by comparing 1.4 GHz radio continuum polarization and HI line emission from the Galactic Arecibo L-Band Feed Array Continuum Transit Survey (GALFACTS) and Galactic Arecibo L-Band Feed Array HI (GALFA-HI) survey, respectively. We compute the polarization gradient of the continuum emission and search for associations with diffuse/translucent HI structures. The polarization gradient is sensitive to changes in the integrated product of the thermal electron density and line-of-sight field strength () in warm ionized gas, while narrow HI structures highlight the plane-of-sky field…
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