Identifying signatures of inflow onto face-on galaxies using the Balmer decrement

Fuente: arXiv
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Main Authors: Sitaram, Meghna, Li, Hui, Zheng, Yong, Bryan, Greg L., Putman, Mary, Smith, Aaron, Kannan, Rahul
Format: Preprint
Published: 2026
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author Sitaram, Meghna
Li, Hui
Zheng, Yong
Bryan, Greg L.
Putman, Mary
Smith, Aaron
Kannan, Rahul
author_facet Sitaram, Meghna
Li, Hui
Zheng, Yong
Bryan, Greg L.
Putman, Mary
Smith, Aaron
Kannan, Rahul
contents Isolated star-forming galaxies require inflows of fresh gas from the surrounding medium to sustain episodes of star formation over time. However, there are very few direct detections of accretion onto external galaxies. Studies in absorption can only observe along limited sightlines, while those in emission can have difficulty distinguishing inflowing gas in the foreground of the galactic disk from similarly Doppler-shifted outflowing gas in the background. We explore the possibility of using the Balmer decrement (H$α$/H$β$) in low-inclination systems as a diagnostic for disentangling the flow geometry in disk-like galaxies. We leverage mock spatial-spectral observations of an isolated Milky Way-mass galaxy simulated using the radiation-hydrodynamics code AREPO-RT and post-processed with the Monte Carlo radiative transfer code COLT. We find that gas components located in front of the disk exhibit systematically lower Balmer decrements than gas embedded in or behind the disk, with a mean front-back offset of $Δ(\text{H}α/\text{H}β) \approx -0.14$. The ability to differentiate between the disk and far-side components is limited by the extremely clumpy, multiphase dust distribution along the line of sight introducing substantial scatter. Overall, the results provide a useful observational diagnostic of inflow and outflow in dusty face-on galaxies.
format Preprint
id arxiv_https___arxiv_org_abs_2604_05141
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Identifying signatures of inflow onto face-on galaxies using the Balmer decrement
Sitaram, Meghna
Li, Hui
Zheng, Yong
Bryan, Greg L.
Putman, Mary
Smith, Aaron
Kannan, Rahul
Astrophysics of Galaxies
Isolated star-forming galaxies require inflows of fresh gas from the surrounding medium to sustain episodes of star formation over time. However, there are very few direct detections of accretion onto external galaxies. Studies in absorption can only observe along limited sightlines, while those in emission can have difficulty distinguishing inflowing gas in the foreground of the galactic disk from similarly Doppler-shifted outflowing gas in the background. We explore the possibility of using the Balmer decrement (H$α$/H$β$) in low-inclination systems as a diagnostic for disentangling the flow geometry in disk-like galaxies. We leverage mock spatial-spectral observations of an isolated Milky Way-mass galaxy simulated using the radiation-hydrodynamics code AREPO-RT and post-processed with the Monte Carlo radiative transfer code COLT. We find that gas components located in front of the disk exhibit systematically lower Balmer decrements than gas embedded in or behind the disk, with a mean front-back offset of $Δ(\text{H}α/\text{H}β) \approx -0.14$. The ability to differentiate between the disk and far-side components is limited by the extremely clumpy, multiphase dust distribution along the line of sight introducing substantial scatter. Overall, the results provide a useful observational diagnostic of inflow and outflow in dusty face-on galaxies.
title Identifying signatures of inflow onto face-on galaxies using the Balmer decrement
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2604.05141