Planet Formation Signposts: Observability of Circumplanetary Disks Via Gas Kinematics
Artículo
Open/ Download
Publication date
2015Metadata
Show full item record
Cómo citar
Pérez, Sebastián
Cómo citar
Planet Formation Signposts: Observability of Circumplanetary Disks Via Gas Kinematics
Author
Abstract
The identification of on-going planet formation requires the finest angular resolutions and deepest sensitivities
in observations inspired by state-of-the-art numerical simulations. Hydrodynamic simulations of planetdisk
interactions predict the formation of circumplanetary disks (CPDs) around accreting planetary cores.
These CPDs have eluded unequivocal detection –their identification requires predictions in CPD tracers. In
this work, we aim to assess the observability of embedded CPDs with ALMA as features imprinted in the
gas kinematics. We use 3D Smooth Particle Hydrodynamic (SPH) simulations of CPDs around 1 and 5 MJup
planets at large stellocentric radii, in locally isothermal and adiabatic disks. The simulations are then connected
with 3D radiative transfer for predictions in CO isotopologues. Observability is assessed by corrupting with
realistic long baseline phase noise extracted from the recent HL Tau ALMA data. We find that the presence of
a CPD produces distinct signposts: 1) compact emission separated in velocity from the overall circumstellar
disk’s Keplerian pattern, 2) a strong impact on the velocity pattern when the Doppler shifted line emission
sweeps across the CPD location, and 3) a local increase in the velocity dispersion. We test our predictions
with a simulation tailored for HD 100546 –which has a reported protoplanet candidate. We find that the CPDs
are detectable in all 3 signposts with ALMA Cycle 3 capabilities for both 1 and 5 MJup protoplanets, when
embedded in an isothermal disk
General note
Artículo de publicación ISI
Patrocinador
FONDECYT
3140601
1130949
1141175
3140634
Millennium Nucleus (Chilean Ministry of Economy)
RC130007
ALMA-CONICYT
31120007
31120006
CONICYT-Gemini grant
32130007
BASAL
PFB-06 CATA
Anillo
ACT-86
FONDEQUIP
AIC-57
QUIMAL-130008
Identifier
URI: https://repositorio.uchile.cl/handle/2250/136133
DOI: DOI: 10.1088/2041-8205/811/1/L5
ISSN: 2041-8205
Quote Item
Astrophysical Journal Letters Volumen: 811 Número: 1 Número de artículo: L5 (2015)
Collections
The following license files are associated with this item: