The first ALMA survey of protoplanetary discs at 3 mm: demographics of grain growth in the Lupus region
Marco Tazzari, Leonardo Testi, Antonella Natta, Jonathan P. Williams,, Megan Ansdell, Jonathan M. Carpenter, Stefano Facchini, Greta Guidi, Michiel, Hogherheijde, Carlo F. Manara, Anna Miotello, Nienke van der Marel

TL;DR
This study uses ALMA observations at 3 mm to analyze grain growth in protoplanetary discs in the Lupus region, finding evidence for millimeter-sized grains and comparing demographics with other star-forming regions.
Contribution
First ALMA survey at 3 mm of Lupus discs providing new insights into grain growth and disc properties at this wavelength.
Findings
Most discs show spectral indices below 3.0, indicating grain growth beyond 1 mm.
Bright discs require millimeter-sized grains to explain their masses.
Results challenge the idea that optically thick sub-structures universally explain the size-luminosity relation.
Abstract
We present the first ALMA survey of protoplanetary discs at 3 mm, targeting 36 young stellar objects in the Lupus star-forming region with deep observations (sensitivity 20-50 microJy/beam) at ~0.35" resolution (~50 au). Building on previous ALMA surveys at 0.89 and 1.3 mm that observed the complete sample of Class II discs in Lupus at a comparable resolution, we aim to assess the level of grain growth in the relatively young Lupus region. We measure 3 mm integrated fluxes, from which we derive disc-averaged 1-3 mm spectral indices. We find that the mean spectral index of the observed Lupus discs is , in all cases , with a tendency for larger spectral indices in the brightest discs and in transition discs. Furthermore, we find that the distribution of spectral indices in Lupus discs is statistically indistinguishable from…
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