Accurate Decomposition of Galaxies with Spiral Arms: Dust Properties and Distribution

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Hauptverfasser: Marchuk, A. A., Chugunov, I. V., Galliano, F., Mosenkov, A. V., Strekalova, P. V., Kostiuk, V. S., Gontcharov, G. A., Ilin, V. B., Savchenko, S. S., Smirnov, A. A., Poliakov, D. M.
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Veröffentlicht: 2025
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author Marchuk, A. A.
Chugunov, I. V.
Galliano, F.
Mosenkov, A. V.
Strekalova, P. V.
Kostiuk, V. S.
Gontcharov, G. A.
Ilin, V. B.
Savchenko, S. S.
Smirnov, A. A.
Poliakov, D. M.
author_facet Marchuk, A. A.
Chugunov, I. V.
Galliano, F.
Mosenkov, A. V.
Strekalova, P. V.
Kostiuk, V. S.
Gontcharov, G. A.
Ilin, V. B.
Savchenko, S. S.
Smirnov, A. A.
Poliakov, D. M.
contents We analyze three nearby spiral galaxies - NGC 1097, NGC 1566, and NGC 3627 - using images from the DustPedia database in seven infrared bands (3.6, 8, 24, 70, 100, 160, and 250 micron). For each image, we perform photometric decomposition and construct a multi-component model, including a detailed representation of the spiral arms. Our results show that the light distribution is well described by an exponential disk and a Sersic bulge when non-axisymmetric components are properly taken into account. We test the predictions of the stationary density wave theory using the derived models in bands, tracing both old stars and recent star formation. Our findings suggest that the spiral arms in all three galaxies are unlikely to originate from stationary density waves. Additionally, we perform spectral energy distribution (SED) modeling using the hierarchical Bayesian code HerBIE, fitting individual components to derive dust properties. We find that spiral arms contain a significant (>10%) fraction of cold dust, with an average temperature of approximately 18-20 K. The estimated fraction of polycyclic aromatic hydrocarbons (PAHs) declines significantly toward the galactic center but remains similar between the arm and interarm regions.
format Preprint
id arxiv_https___arxiv_org_abs_2504_05839
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Accurate Decomposition of Galaxies with Spiral Arms: Dust Properties and Distribution
Marchuk, A. A.
Chugunov, I. V.
Galliano, F.
Mosenkov, A. V.
Strekalova, P. V.
Kostiuk, V. S.
Gontcharov, G. A.
Ilin, V. B.
Savchenko, S. S.
Smirnov, A. A.
Poliakov, D. M.
Astrophysics of Galaxies
We analyze three nearby spiral galaxies - NGC 1097, NGC 1566, and NGC 3627 - using images from the DustPedia database in seven infrared bands (3.6, 8, 24, 70, 100, 160, and 250 micron). For each image, we perform photometric decomposition and construct a multi-component model, including a detailed representation of the spiral arms. Our results show that the light distribution is well described by an exponential disk and a Sersic bulge when non-axisymmetric components are properly taken into account. We test the predictions of the stationary density wave theory using the derived models in bands, tracing both old stars and recent star formation. Our findings suggest that the spiral arms in all three galaxies are unlikely to originate from stationary density waves. Additionally, we perform spectral energy distribution (SED) modeling using the hierarchical Bayesian code HerBIE, fitting individual components to derive dust properties. We find that spiral arms contain a significant (>10%) fraction of cold dust, with an average temperature of approximately 18-20 K. The estimated fraction of polycyclic aromatic hydrocarbons (PAHs) declines significantly toward the galactic center but remains similar between the arm and interarm regions.
title Accurate Decomposition of Galaxies with Spiral Arms: Dust Properties and Distribution
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2504.05839