Resolving the inner regions of the HD97048 circumstellar disk with VLT/NACO polarimetric differential imaging
Sascha P. Quanz (1), Stephan M. Birkmann (2), Daniel Apai (3),, Sebastian Wolf (4), Thomas Henning (5) ((1) Institute for Astronomy, ETH, Zurich, (2) ESA/ESTEC, (3) Department of Astronomy/Department of Planetary, Sciences, University of Arizona, (4) University of Kiel

TL;DR
This study uses VLT/NACO polarimetric imaging to resolve and analyze the inner regions of the circumstellar disk around HD97048, revealing detailed brightness profiles and dust properties crucial for understanding planet formation.
Contribution
First polarimetric imaging of the inner 16-160 AU of HD97048's disk, providing new insights into disk structure and dust grain variation with radius.
Findings
Resolved the disk in polarized light between 16-160 AU.
Derived disk inclination angles of 34±5° and 47±2°.
Surface brightness decreases with radius following power-laws.
Abstract
Circumstellar disks are the cradles of planetary systems and their physical and chemical properties directly influence the planet formation process. As most planets supposedly form in the inner disk regions, i.e., within a few tens of AU, it is crucial to study circumstellar disk on these scales to constrain the conditions for planet formation. Our aims are to characterize the inner regions of the circumstellar disk around the young Herbig Ae/Be star HD97048 in polarized light. We use VLT/NACO to observe HD97048 in polarimetric differential imaging (PDI) mode in the H and Ks band. We spatially resolve the disk around HD97048 in polarized flux in both filters on scales between ~0.1"-1.0" corresponding to the inner ~16-160 AU. Fitting isophots to the flux calibrated H-band image between 13 - 14 mag/arcsec^2 and 14 - 15 mag/arcsec^2 we derive a apparent disk inclination angle of 34+-5 deg…
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