Large grains in disks around young stars: ATCA observations of WW Cha, RU Lup, and CS Cha
Dave Lommen, Sarah Maddison, Chris Wright, Ewine van Dishoeck, David, Wilner, Tyler Bourke

TL;DR
This study investigates the emission mechanisms of cm-wavelength radiation in disks around young stars, finding evidence for thermal emission from large grains and non-thermal processes in T Tauri stars WW Cha, RU Lup, and CS Cha.
Contribution
It provides new multi-epoch observations at cm and mm wavelengths of these stars, clarifying the origins of their radio emissions and grain growth status.
Findings
WW Cha shows stable 16 mm emission, variable 3 cm emission.
RU Lup exhibits variability across all observed bands, indicating non-thermal processes.
CS Cha's detection suggests thermal emission from mm-sized grains, with limited resolution of disk gaps.
Abstract
Grains in disks around young stars grow from interstellar submicron sizes to planetesimals over the course of several Myr. Thermal emission of large grains or pebbles can be best observed at cm wavelengths. However, other emission mechanisms can contribute. We aim to determine the mechanisms of cm emission for 3 T Tauri stars. WW Cha and RU Lup were recently found to have grain growth at least up to mm sizes in their circumstellar disks. CS Cha has similar indications for grain growth in its circumbinary disk. The T Tauri stars WW Cha and RU Lup were monitored over several years at mm and cm wavelengths, using ATCA. The new ATCA 7 mm system was also used to observe CS Cha. WW Cha was detected on several occasions at 7 and 16 mm. We obtained one detection of WW Cha at 3 cm and upper limits only at 6 cm. The emission at 16 mm was stable over days, months and years, but the emission at 3…
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