Modelling the spectral energy distribution of galaxies. V. The dust and PAH emission SEDs of disk galaxies
Cristina C. Popescu, Richard J. Tuffs, Michael A. Dopita, Joerg, Fischera, Nikolaos D. Kylafis, Barry F. Madore

TL;DR
This paper introduces a comprehensive model for the spectral energy distributions of spiral galaxies, accounting for dust and PAH emissions from UV to submillimeter wavelengths, constrained by empirical geometrical data.
Contribution
It provides a self-consistent, radiative transfer-based model predicting galaxy dust emission with minimal free parameters, incorporating stochastic heating and empirical geometrical constraints.
Findings
Predicted dust emission SEDs across parameter space.
Library of simulated dust emission and attenuation SEDs.
Parameters influence dust/PAH emission colours orthogonally.
Abstract
We present a self-consistent model of the spectral energy distributions (SEDs) of spiral galaxies from the ultraviolet (UV) to the mid-infrared (MIR)/far-infrared (FIR)/submillimeter (submm) based on a full radiative transfer calculation of the propagation of starlight in galaxy disks. This model predicts not only the total integrated energy absorbed in the UV/optical and re-emitted in the infrared/submm, but also the colours of the dust emission based on an explicit calculation of the strength and colour of the UV/optical radiation fields heating the dust, and incorporating a full calculation of the stochastic heating of small dust grains and PAH molecules. The geometry of the translucent components of the model is empirically constrained using the results from the radiation transfer analysis of Xilouris et al. on spirals in the middle range of the Hubble sequence, while the geometry…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astrophysics and Star Formation Studies · Stellar, planetary, and galactic studies
