The Evolution of Dust Disk Sizes from a Homogeneous Analysis of 1-10 Myr old Stars

We utilize ALMA archival data to estimate the dust disk size of 152 protoplanetary disks in Lupus (1-3 Myr), Chamaeleon I (2-3 Myr), and Upper-Sco (5-11 Myr). We combine our sample with 47 disks from Tau/Aur and Oph whose dust disk radii were estimated, as here, through fitting radial profile models...

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Veröffentlicht in:The Astrophysical journal 2020-06, Vol.895 (2), p.126
Hauptverfasser: Hendler, Nathanial, Pascucci, Ilaria, Pinilla, Paola, Tazzari, Marco, Carpenter, John, Malhotra, Renu, Testi, Leonardo
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container_issue 2
container_start_page 126
container_title The Astrophysical journal
container_volume 895
creator Hendler, Nathanial
Pascucci, Ilaria
Pinilla, Paola
Tazzari, Marco
Carpenter, John
Malhotra, Renu
Testi, Leonardo
description We utilize ALMA archival data to estimate the dust disk size of 152 protoplanetary disks in Lupus (1-3 Myr), Chamaeleon I (2-3 Myr), and Upper-Sco (5-11 Myr). We combine our sample with 47 disks from Tau/Aur and Oph whose dust disk radii were estimated, as here, through fitting radial profile models to visibility data. We use these 199 homogeneously derived disk sizes to identify empirical disk-disk and disk-host property relations as well as to search for evolutionary trends. In agreement with previous studies, we find that dust disk sizes and millimeter luminosities are correlated, but show for the first time that the relationship is not universal between regions. We find that disks in the 2-3 Myr old Cha I are not smaller than disks in other regions of similar age, and confirm the Barenfeld et al. finding that the 5-10 Myr USco disks are smaller than disks belonging to younger regions. Finally, we find that the outer edge of the solar system, as defined by the Kuiper Belt, is consistent with a population of dust disk sizes which have not experienced significant truncation.
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subjects Astrophysics
Dust
Dust continuum emission
Empirical analysis
Kuiper belt
Open star clusters
Planet formation
Pre-main sequence stars
Protoplanetary disks
Solar system
Solar system formation
Visibility
title The Evolution of Dust Disk Sizes from a Homogeneous Analysis of 1-10 Myr old Stars
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