Measuring Dust Masses of Protoplanetary Disks in Serpens and L1641/L1647 with ALMA

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Main Authors: Zamudio-Ruvalcaba, Luisa F., Espaillat, Catherine C., Ribas, Álvaro, Macías, Enrique
Format: Preprint
Published: 2025
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author Zamudio-Ruvalcaba, Luisa F.
Espaillat, Catherine C.
Ribas, Álvaro
Macías, Enrique
author_facet Zamudio-Ruvalcaba, Luisa F.
Espaillat, Catherine C.
Ribas, Álvaro
Macías, Enrique
contents Protoplanetary disks are an essential component of the planet-formation process. The amount of dust and gas in the disk constrains the number and size of planets that can form in a system. We analyze 178 T-Tauri stars, 18 in Serpens and 160 in L1641/L1647, and measure their disk dust masses using spectral energy distribution (SED) modeling and multiwavelength data, including 1.3 mm (ALMA band 6) fluxes from the literature. The disk masses calculated in this work are up to $\sim$2 times higher than those previously reported. We conclude that this is because disks may be partially optically thick at millimeter wavelengths while most calculations of the disk mass assume that the disk is optically thin at 1.3 mm. We calculate optical depths at 1.3 and 7 mm for a subset of the Serpens and L1641/L1647 disk sample and show that the vast majority of disks become optically thin at longer millimeter wavelengths; thus, observations at 7 mm (i.e., ALMA band 1) are vital to better characterize disk dust masses.
format Preprint
id arxiv_https___arxiv_org_abs_2511_20817
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Measuring Dust Masses of Protoplanetary Disks in Serpens and L1641/L1647 with ALMA
Zamudio-Ruvalcaba, Luisa F.
Espaillat, Catherine C.
Ribas, Álvaro
Macías, Enrique
Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
Protoplanetary disks are an essential component of the planet-formation process. The amount of dust and gas in the disk constrains the number and size of planets that can form in a system. We analyze 178 T-Tauri stars, 18 in Serpens and 160 in L1641/L1647, and measure their disk dust masses using spectral energy distribution (SED) modeling and multiwavelength data, including 1.3 mm (ALMA band 6) fluxes from the literature. The disk masses calculated in this work are up to $\sim$2 times higher than those previously reported. We conclude that this is because disks may be partially optically thick at millimeter wavelengths while most calculations of the disk mass assume that the disk is optically thin at 1.3 mm. We calculate optical depths at 1.3 and 7 mm for a subset of the Serpens and L1641/L1647 disk sample and show that the vast majority of disks become optically thin at longer millimeter wavelengths; thus, observations at 7 mm (i.e., ALMA band 1) are vital to better characterize disk dust masses.
title Measuring Dust Masses of Protoplanetary Disks in Serpens and L1641/L1647 with ALMA
topic Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
url https://arxiv.org/abs/2511.20817