First JVLA Radio Observation on PDS70
Hauyu Baobab Liu, Simon Casassus, Ruobing Dong, Kiyoaki Doi, Jun, Hashimoto, Takayuki Muto

TL;DR
This study presents the first JVLA radio observations of the PDS~70 protoplanetary system, revealing complex dust emission mechanisms and azimuthal asymmetries, with implications for understanding dust grain growth and planet-disk interactions.
Contribution
First JVLA multi-frequency radio observations of PDS~70, identifying emission from spinning nanometer-sized dust particles and analyzing dust properties in the system.
Findings
Detected continuum emission at Ka and K bands.
Spectral indices suggest presence of large dust grains and spinning nanometer-sized particles.
Azimuthal asymmetry observed in the dusty ring.
Abstract
PDS~70 is a protoplanetary system that hosts two actively accreting gas giants, namely PDS~70b and PDS~70c. The system has a 60--100 au dusty ring that has been resolved by ALMA, along with circumplanetary disks around the two gas giants. Here we report the first JVLA Q (40--48 GHz), Ka (29--37 GHz), K (18--26 GHz), and X (8--12 GHz) bands continuum observations, and the complementary ALMA Bands 3 (98 GHz) and 4 (145 GHz) observations towards PDS~70. The dusty ring appears azimuthally asymmetric in our ALMA images. We obtained firm detections at Ka and K bands without spatially resolving the source; we obtained a marginal detection at Q band, and no detection at X band. The spectral indices () are 51 at 33--44 GHz and 0.60.2 at 22--33 GHz. At 10--22 GHz, the conservative lower limit of is 1.7. The 33--44 GHz flux density is likely dominated…
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Taxonomy
TopicsAstronomical Observations and Instrumentation · Astronomy and Astrophysical Research · Radio Astronomy Observations and Technology
