Effects of temperature-dependent optical properties on the determination of interstellar dust masses
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ID: 325538
2026
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Abstract
Abstract Accurate measurements of interstellar dust mass are key to answering several astrophysical questions. A common method of obtaining the mass is to fit the far-infrared thermal emission of the dust with a modified blackbody model; however, this method is subject to several systematics. In particular, how temperature-dependent dust optical properties affect fit results has received little attention. We provide the first quantification of this effect based on experimental measurements of optical properties from the scientific literature. We created a grid of synthetic observations for variable-opacity dust and fitted it with a modified blackbody model; the difference between the input properties of synthetic observations and the values derived from the fit provides a measure of the bias induced by the temperature dependence. We find that fixing the value of the opacity power law index β introduces a temperature-dependent bias on the fit, while keeping β as a free parameter introduces a bias that depends mainly on the wavelength range used. For instance, depending on the properties of the observed object and on the choice of fit procedure, temperature dependence alone can induce an overestimate of 25-60 % in dust masses at high redshift (z ∼ 8). Our findings highlight the limitations of power laws as opacity models.
| Reference Key |
openalex_W7171552843
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| Authors | Lapo Fanciullo, Jonathan P. Marshall, F. Kemper, Peter Scicluna, Sundar Srinivasan |
| Journal | monthly notices of the royal astronomical society |
| Year | 2026 |
| DOI |
10.1093/mnras/stag1565
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| URL | |
| Keywords | Keywords not found |
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