A survey of the linear polarization of directly imaged exoplanets and brown dwarf companions with SPHERE-IRDIS: First polarimetric detections revealing disks around DH Tau B and GSC 6214-210 B

Context. Young giant planets and brown dwarf companions emit near-infrared radiation that can be linearly polarized up to several percent. This polarization can reveal the presence of an (unresolved) circumsubstellar accretion disk, rotation-induced oblateness of the atmosphere, or an inhomogeneous...

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Veröffentlicht in:Astronomy and astrophysics (Berlin) 2021-03, Vol.647, p.A21
Hauptverfasser: van Holstein, R.G., Stolker, T., Jensen-Clem, R., Ginski, C., Milli, J., de Boer, J., Girard, J.H., Wahhaj, Z., Bohn, A.J., Millar-Blanchaer, M.A., Benisty, M., Bonnefoy, M., Chauvin, G., Dominik, C., Hinkley, S., Keller, C.U., Keppler, M., Langlois, M., Marino, S., Ménard, F., Perrot, C., Schmidt, T.O.B., Vigan, A., Zurlo, A., Snik, F.
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Sprache:eng
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Zusammenfassung:Context. Young giant planets and brown dwarf companions emit near-infrared radiation that can be linearly polarized up to several percent. This polarization can reveal the presence of an (unresolved) circumsubstellar accretion disk, rotation-induced oblateness of the atmosphere, or an inhomogeneous distribution of atmospheric dust clouds. Aims. We aim to measure the near-infrared linear polarization of 20 known directly imaged exoplanets and brown dwarf companions. Methods. We observed the companions with the high-contrast imaging polarimeter SPHERE-IRDIS at the Very Large Telescope. We reduced the data using the IRDAP pipeline to correct for the instrumental polarization and crosstalk of the optical system with an absolute polarimetric accuracy
ISSN:0004-6361
1432-0746
1432-0756
DOI:10.1051/0004-6361/202039290