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Inner disc and circumplanetary material in the PDS 70 system: Insights from multi-epoch, multi-frequency ALMA observations

Academic Article
Publication Date:
2025
Citation:
Inner disc and circumplanetary material in the PDS 70 system: Insights from multi-epoch, multi-frequency ALMA observations / D. Fasano, M. Benisty, P. Curone, S. Facchini, F. Zagaria, T.C. Yoshida, K. Doi, A. Sierra, S. Andrews, J. Bae, A. Isella, N. Kurtovic, L.M. Pérez, P. Pinilla, L. Rampinelli, R. Teague. - In: ASTRONOMY & ASTROPHYSICS. - ISSN 0004-6361. - 699:(2025 Jul), pp. A373.1-A373.12. [10.1051/0004-6361/202554959]
abstract:
Context. The two giant protoplanets directly detected in the dust-depleted cavity of PDS 70 offer a unique opportunity to study the
processes of ongoing planet formation. The planets have been detected both in IR thermal light and in the Hα line, indicating that they
are actively accreting material from their surroundings.
Aims. We calibrated and analysed archival Atacama Large Millimeter/subMillimeter Array (ALMA) band 6 and 7 observations of
PDS 70 to detect circumplanetary material in independent datasets taken at different epochs in 2019, 2021, and 2023 and assess its
possible motion.
Methods. We performed 2D visibility modelling of the high-resolution ALMA band 6 (∼0.11′′ × 0.08′′) and band 7 (∼0.05′′ × 0.05′′)
dust continuum emission of the outer disc. After subtracting the model from the data, we imaged the dust continuum emission in the
cavity of PDS 70 at multiple epochs.
Results. We re-detect the compact dust emission around PDS 70 c in all our datasets in band 6 and 7, with a more than 3.8σ
significance, and tentatively detect compact emission around PDS 70 b at ∼3σ in the band 6 datasets, with a peak emission of
59 ± 17 μJy/beam and 46 ± 14 μJy/beam. We find the astrometric relative position of the compact emission around PDS 70 c to
be consistent with the expected position of the planet in the 2019–2023 time range. We measure a peak flux difference of up to
64 ± 34 μJy/beam at a 1σ confidence level for the continuum emission coming from the region around PDS 70 c and perform a
Bayesian test on our measurements, finding that they are not consistent with significant variable emission. We find no evidence of flux
variability in the inner disc.We measure the dust mass of the material co-located with PDS 70 c and the inner disc to be in the range of
0.008−0.063 M⊕ and 0.04−0.31 M⊕, respectively, consistent with previous measurements. Additionally, we obtain band 6–7 spectral
indices of 2.5 ± 1.2 and 3.2 ± 0.5 for the dust emission around PDS 70 c and in the inner disc, respectively, suggesting the inner disc
emission is dominated by optically thin dust.
IRIS type:
01 - Articolo su periodico
Keywords:
planets and satellites: formation; protoplanetary disks; planet-disk interactions;
List of contributors:
D. Fasano, M. Benisty, P. Curone, S. Facchini, F. Zagaria, T.C. Yoshida, K. Doi, A. Sierra, S. Andrews, J. Bae, A. Isella, N. Kurtovic, L.M. Pérez, P. Pinilla, L. Rampinelli, R. Teague
Authors of the University:
FACCHINI STEFANO ( author )
RAMPINELLI LUNA ( author )
Link to information sheet:
https://air.unimi.it/handle/2434/1177685
Full Text:
https://air.unimi.it/retrieve/handle/2434/1177685/3118683/unpaywall-bitstream-2062391065.pdf
Project:
Unveiling the infancy of planetary systems (UNVEIL)
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