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September 17, 2025Astronomy and Astrophysics2 citations

Relating spatially resolved optical attenuation, dust, and gas in nearby galaxies

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EPE. -D. PaspaliarisSBS. BianchiECE. Corbelli

Key Points

  • Optical attenuation estimates reveal clearer correlations with molecular gas density across nearby galaxies, indicating stronger relationships.
  • The study utilizes far-ultraviolet to sub-millimeter observations for mapping dust surface density in five nearby star-forming galaxies.
  • CIGALE SED-fitting code was employed to derive detailed optical and gas properties from spectral measurements and models.
  • Findings support the idea that dust and gas interactions are complex, influencing optical properties of star-forming regions.

Abstract

The purpose of the present study is to relate the optical attenuation inferred by the Balmer decrement, A_ V BD and by the spectral energy distribution (SED) fitting, A_ V SED to the dust distribution and gas surface density throughout the disc of galaxies, down to scales smaller than 0. 5 kpc. We investigated five nearby Herschel -detected star-forming spiral galaxies with available far-ultraviolet to sub-millimetre observations, along with atomic and molecular gas surface density maps and optical integral-field spectroscopic data. We used the CIGALE SED-fitting code to map the dust mass surface density (Σ _ dust) and A_ V SED of different stellar populations. For each pixel, we independently estimated the attenuation from the Balmer decrement. We find that both Σ _ dust and A_ V BD are better at tracing the molecular and total gas mass surface density than the atomic gas. Since regions sampled in this study have high molecular fractions, atomic gas surface densities, indicative of molecular gas shielding layers, decrease as the mean dust-to-gas ratio increases from galaxy to galaxy. The fitted attenuation towards the young stellar population, A^ young V SED is in good agreement with A_ V BD. It can then be used to trace the attenuation in star-forming galaxies for which integral-field observations are not available. We estimate the ratio of A_ V BD over the total stellar A_ V SED and find it slightly larger than what has been found in previous studies. Finally, we investigate which dust distribution better reproduces the estimated A_ V BD and A_ V SED. We find that the attenuation towards old stars is consistent with the expectations for a standard galactic disc, where the stellar and dust distributions are mixed, while A_ V BD and A^ young V SED are between the values expected for a foreground dust screen and the mixed configuration.

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Cite This Study

Paspaliaris et al. (2025) studied this question.

synapsesocial.com/papers/68d4566c31b076d99fa5bc40https://doi.org/10.1051/0004-6361/202555133
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