We present the first observational evidence for a circumplanetary disk around the protoplanet PDS~70~b, based on a new spectrum in the K band acquired with VLT/SINFONI. We tested three hypotheses to explain the spectrum: Atmospheric emission from the planet with either (1) a single value of extinction or (2) variable extinction, and (3) a combined atmospheric and circumplanetary disk model. Goodness-of-fit indicators favour the third option, suggesting circumplanetary material contributing excess thermal emission --- most prominent at λ≳2.3μm. Inferred accretion rates (∼10−7.8--10−7.3MJ yr−1) are compatible with observational constraints based on the Hα and Brγ lines. For the planet, we derive an effective temperature of 1500--1600 K, surface gravity log(g)∼4.0, radius ∼1.6RJ, mass ∼10MJ, and possible thick clouds. Models with variable extinction lead to slightly worse fits. However, the amplitude (ΔAV≳3mag) and timescale of variation (≲~years) required for the extinction would also suggest circumplanetary material.
@article{arxiv.1905.06370,
title = {Evidence for a circumplanetary disk around protoplanet PDS 70 b},
author = {V. Christiaens and F. Cantalloube and S. Casassus and D. J. Price and O. Absil and C. Pinte and J. Girard and M. Montesinos},
journal= {arXiv preprint arXiv:1905.06370},
year = {2019}
}
Comments
8 pages, 2 figures, 1 table. This is a pre-copyedited, author-produced PDF of an article accepted for publication in ApJL on 2019 May 12