JWST/NIRCam Coronagraphy of the Young Planet-hosting Debris Disk AU Microscopii

Author:

Lawson KellenORCID,Schlieder Joshua E.ORCID,Leisenring Jarron M.ORCID,Bogat EllORCID,Beichman Charles A.ORCID,Bryden GeoffreyORCID,Gáspár AndrásORCID,Groff Tyler D.ORCID,McElwain Michael W.ORCID,Meyer Michael R.ORCID,Barclay ThomasORCID,Calissendorff PerORCID,De Furio MatthewORCID,Ygouf MarieORCID,Boccaletti AnthonyORCID,Greene Thomas P.ORCID,Krist John,Plavchan PeterORCID,Rieke Marcia J.ORCID,Roellig Thomas L.ORCID,Stansberry JohnORCID,Wisniewski John P.ORCID,Young Erick T.ORCID

Abstract

Abstract High-contrast imaging of debris disk systems permits us to assess the composition and size distribution of circumstellar dust, to probe recent dynamical histories, and to directly detect and characterize embedded exoplanets. Observations of these systems in the infrared beyond 2–3 μm promise access to both extremely favorable planet contrasts and numerous scattered-light spectral features—but have typically been inhibited by the brightness of the sky at these wavelengths. We present coronagraphy of the AU Microscopii (AU Mic) system using JWST’s Near Infrared Camera (NIRCam) in two filters spanning 3–5 μm. These data provide the first images of the system’s famous debris disk at these wavelengths and permit additional constraints on its properties and morphology. Conducting a deep search for companions in these data, we do not identify any compelling candidates. However, with sensitivity sufficient to recover planets as small as ∼0.1 Jupiter masses beyond ∼2″ (∼20 au) with 5σ confidence, these data place significant constraints on any massive companions that might still remain at large separations and provide additional context for the compact, multiplanet system orbiting very close-in. The observations presented here highlight NIRCam’s unique capabilities for probing similar disks in this largely unexplored wavelength range, and they provide the deepest direct imaging constraints on wide-orbit giant planets in this very well-studied benchmark system.

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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