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A nearby galaxy perspective on interstellar dust properties and their evolution

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arxiv 2202.01868 v1 pith:HU3ZL6BG submitted 2022-02-03 astro-ph.GA

classification astro-ph.GA
keywords dustinterstellarevolutiongalaxiesgivepropertiesreviewchapter
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Interstellar dust is a key physical ingredient of galaxies, obscuring star formation, regulating the heating and cooling of the gas, and building-up chemical complexity. In this manuscript, I give a wide review of interstellar dust properties and some of the modern techniques used to study it. I start with a general introduction presenting the main concepts, in molecular and solid-state physics, required to understand the contemporary literature on the subject. I then review the empirical evidence we currently use to constrain state-of-the-art dust models. Follows a long discussion about our current understanding of the grain properties of nearby galaxies, with an emphasis on the results from spectral energy distribution modeling. The following chapter presents dust evolution at all scales. I review the different microphysical evolution processes, and the way they are accounted for in cosmic dust evolution models. I give my take on the origin of interstellar dust in galaxies of different metallicities. The last chapter focusses on methodology. I give an introduction to the Bayesian method and compare it to frequentist techniques. I discuss the epistemological consequences of the two approaches, and show why the field of interstellar dust requires a probabilistic viewpoint. I end the manuscript with a summary of the major breakthroughs achieved in the past decade, and delineate a few prospectives for the next decade.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 4 citations worldwide. Full citation record

  1. Stardust Galaxies at z>9: A Dust-Origin Transition Behind the Excess of UV-Bright Galaxies

    astro-ph.GA 2026-05 unverdicted novelty 6.0 of 10

    At z>9, the UV-bright galaxy excess can be explained by supernova-produced dust with low FUV opacity (κ≈10^3–10^4 cm^2/g) plus porous geometry and modest star-formation efficiency evolution.

  2. The role of young and evolved stars in the heating of dust in local galaxies

    astro-ph.GA 2025-07 conditional novelty 6.0 of 10

    In 18 nearby spirals, both young and evolved stars heat the cold dust, with the dominant source varying from galaxy to galaxy and no single mechanism winning overall.

  3. Geo-ID: Test-Time Geometric Consensus for Cross-View Consistent Intrinsics

    cs.CV 2026-03 unverdicted novelty 5.0 of 10

    Geo-ID enforces cross-view consistent PBR intrinsics at test time by coupling off-the-shelf single-view predictors through uncertainty-aware geometric consensus, without retraining or inverse rendering.

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