The contribution of neutral gas to Faraday tomographic data at low frequencies. A first extensive comparison between real and synthetic data
arXiv:2602.08839 · doi:10.1051/0004-6361/202557351
Abstract
LOFAR observations of diffuse interstellar polarization at meter wavelengths reveal intricate polarized intensity structures with an unexpected correlation with neutral HI filaments that could not be reproduced in simulations with low cold neutral medium (CNM) abundance. We investigate whether MHD simulations of thermally bi-stable neutral interstellar medium, with a range of CNM fraction, can reproduce the properties of the 3C196 field, the high Galactic latitude test field. Using 50 pc simulations with varying levels of turbulence and compressibility, we generated synthetic 21 cm and synchrotron observations, including instrumental noise and beam effects, for different line-of-sight orientations relative to the magnetic field. We developed MOOSE, a code to generate synthetic synchrotron polarization and Faraday tomography. We also developed a metric based on the HOG algorithm, to quantify the relative contribution of cold and warm neutral medium structures to the Faraday tomographic data. The synthetic observations show levels of polarization intensity and RM values comparable to the 3C196 field, indicating that thermal electrons associated with the neutral HI phase can account for a significant fraction of the synchrotron polarized emission at 100-200 MHz. The simulations consistently reveal a correlation between CNM and Faraday tomographic structures that depends on turbulence level, magnetic field orientation, and observational noise, but only weakly on CNM fraction. We found slightly weaker CNM-Synchrotron polarized emission correlation level than observed in the 3C196 field. These results suggest that low-frequency polarimetric observations provide a valuable probe of magnetic-field morphology in the multi-phase Solar-neighborhood ISM, while simultaneously underscoring the need for improved modeling of the turbulent, multi-phase, and partially ionized interstellar medium.
23 pages, accepted for publication in Astronomy & Astrophysics
References in corpus (20)
- A High Order Godunov Scheme with Constrained Transport and Adaptive Mesh Refinement for Astrophysical MHD
- A parsec-scale Galactic 3D dust map out to 1.25 kpc from the Sun
- Mapping the Magnetic Interstellar Medium in Three Dimensions Over the Full Sky with Neutral Hydrogen
- Faraday tomography of the local interstellar medium with LOFAR: Galactic foregrounds towards IC342
- ROHSA: Regularized Optimization for Hyper-Spectral Analysis - Application to phase separation of 21 cm data
- Cosmic rays in molecular clouds probed by H rovibrational lines -- Perspectives for the James Webb Space Telescope
- The correct sense of Faraday rotation
- Formation of HI Clouds in Shock-compressed Interstellar Medium: Physical Origin of Angular Correlation Between Filamentary Structure and Magnetic Field
- The Galactic Magneto-Ionic Medium Survey: Moments of the Faraday Spectra
- 3D chemical structure of diffuse turbulent ISM. I. Statistics of the HI-to-H transition
- Thermal and turbulent properties of the Warm Neutral Medium in the solar neighborhood
- Spectral index of synchrotron emission: insights from the diffuse and magnetised interstellar medium
- Faraday tomography of LoTSS-DR2 data: I. Faraday moments in the high-latitude outer Galaxy and revealing Loop III in polarisation
- The multiphase and magnetized neutral hydrogen seen by LOFAR
- First look at the multiphase interstellar medium with synthetic observations of low-frequency Faraday tomography
- ALMAGAL IV. Morphological comparison of molecular and thermal dust emission using the histogram of oriented gradients (HOG) method
- Introduction to Faraday tomography and its future prospects
- Shocks in the warm neutral medium I -- Theoretical model
- Associating LOFAR Galactic Faraday structures with the warm neutral medium
- Description of turbulent dynamics in the interstellar medium: Multifractal microcanonical analysis: II. Sparse filtering of Herschel observation maps and visualization of filamentary structures at different length scales