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Multi-epoch Direct Imaging and Time-variable Scattered Light Morphology of the HD 163296 Protoplanetary Disk

Authors :
Evan A. Rich
John P. Wisniewski
Thayne Currie
Misato Fukagawa
Carol A. Grady
Michael L. Sitko
Monika Pikhartova
Jun Hashimoto
Lyu Abe
Wolfgang Brandner
Timothy D. Brandt
Joseph C. Carson
Jeffrey Chilcote
Ruobing Dong
Markus Feldt
Miwa Goto
Tyler Groff
Olivier Guyon
Yutaka Hayano
Masahiko Hayashi
Saeko S. Hayashi
Thomas Henning
Klaus W. Hodapp
Miki Ishii
Masanori Iye
Markus Janson
Nemanja Jovanovic
Ryo Kandori
Jeremy Kasdin
Gillian R. Knapp
Tomoyuki Kudo
Nobuhiko Kusakabe
Masayuki Kuzuhara
Jungmi Kwon
Julien Lozi
Frantz Martinache
Taro Matsuo
Satoshi Mayama
Michael W Mcelwain
Shoken Miyama
Jun-Ichi Morino
Amaya Moro-Martin
Takao Nakagawa
Tetsuo Nishimura
Tae-Soo Pyo
Eugene Serabyn
Hiroshi Suto
Ray W. Russel
Ryuji Suzuki
Michihiro Takami
Naruhisa Takato
Hiroshi Terada
Christian Thalmann
Edwin L. Turner
Taichi Uyama
Kevin R. Wagner
Makoto Watanabe
Toru Yamada
Hideki Takami
Tomonori Usuda
Motohide Tamura
Source :
The Astrophysical Journal. 875(1)
Publication Year :
2019
Publisher :
United States: NASA Center for Aerospace Information (CASI), 2019.

Abstract

We present H-band polarized scattered light imagery and JHK high-contrast spectroscopy of the protoplanetary disk around HD 163296 observed with the High-Contrast Coronographic Imager for Adaptive Optics (HiCIAO) and Subaru Coronagraphic Extreme Adaptive Optics (SCExAO)/Coronagraphic High Angular Resolution Imaging Spectrograph (CHARIS) instruments at Subaru Observatory. The polarimetric imagery resolve a broken ring structure surrounding HD 163296 that peaks at a distance along the major axis of 0 65 (66 au) and extends out to 0 98 (100 au) along the major axis. Our 2011 H-band data exhibit clear axisymmetry, with the NW and SE side of the disk exhibiting similar intensities. Our data are clearly different from 2016 epoch H-band observations of the Very Large Telescope (VLT)/Spectro-Polarimetric High-contrast Exoplanet REsearch (SPHERE), which found a strong 2.7 x asymmetry between the NW and SE side of the disk. Collectively, these results indicate the presence of time-variable, non-azimuthally symmetric illumination of the outer disk. While our SCExAO/CHARIS data are sensitive enough to recover the planet candidate identiļ¬ed from NIRC2 in the thermal infrared (IR), we fail to detect an object with JHK brightness nominally consistent with this object. This suggests that the candidate is either fainter in JHK bands than model predictions, possibly due to extinction from the disk or atmospheric dust/ clouds, or that it is an artifact of the data set/data processing, such as a residual speckle or partially subtracted disk feature. Assuming standard hot-start evolutionary models and a system age of 5Myr, we set new, direct mass limits for the inner (outer) Atacama Large Millimeter/submillimeter Array (ALMA)-predicted protoplanet candidate along the major (minor) disk axis of of 1.5 (2) M(J).

Subjects

Subjects :
Astrophysics

Details

Language :
English
ISSN :
15384357 and 0004637X
Volume :
875
Issue :
1
Database :
NASA Technical Reports
Journal :
The Astrophysical Journal
Notes :
411672.04.02, , NNX-17AF88G
Publication Type :
Report
Accession number :
edsnas.20205003189
Document Type :
Report
Full Text :
https://doi.org/10.3847/1538-4357/ab0f3b