Multiband imaging of the HD 36546 debris disk: a refined view from SCExAO/CHARIS
Kellen Lawson, Thayne Currie, John P. Wisniewski, Motohide Tamura,, Jean-Charles Augereau, Timothy D. Brandt, Olivier Guyon, N. Jeremy Kasdin,, Tyler D. Groff, Julien Lozi, Vincent Deo, Sebastien Vievard, Jeffrey, Chilcote, Nemanja Jovanovic, Frantz Martinache, Nour Skaf

TL;DR
This study uses multi-wavelength high-contrast imaging to analyze the structure, composition, and potential companions of the young HD 36546 debris disk, revealing detailed disk properties and constraints on unseen objects.
Contribution
First multi-wavelength imaging and spectrophotometric analysis of HD 36546's debris disk, providing detailed modeling and constraints on potential planetary companions.
Findings
Disk exhibits symmetric brightness and slightly blue near-infrared colors.
Disk has a shallow radial dust density profile with a fiducial radius of ~83 au.
Constraints on companions include a limit of ~11 Jupiter masses within 0.2 arcseconds.
Abstract
We present the first multi-wavelength (near-infrared; ) imaging of HD 36546's debris disk, using the Subaru Coronagraphic Extreme Adaptive Optics (SCExAO) system coupled with the Coronagraphic High Angular Resolution Imaging Spectrograph (CHARIS). As a 3-10 Myr old star, HD 36546 presents a rare opportunity to study a debris disk at very early stages. SCExAO/CHARIS imagery resolves the disk over angular separations of (projected separations of ) and enables the first spectrophotometric analysis of the disk. The disk's brightness appears symmetric between its eastern and western extents and it exhibits slightly blue near-infrared colors on average (e.g. ) suggesting copious sub-micron sized or highly porous grains. Through detailed modeling adopting a Hong scattering phase function…
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