Probing inner and outer disk misalignments in transition disks
A.J. Bohn, M. Benisty, K. Perraut, N. van der Marel, L. W\"olfer, E.F., van Dishoeck, S. Facchini, C.F. Manara, R. Teague, L. Francis, J-P. Berger,, R. Garcia-Lopez, C. Ginski, T. Henning, M. Kenworthy, S. Kraus, F. M\'enard,, A. M\'erand, L.M. P\'erez

TL;DR
This study investigates misalignments between inner and outer disks in transition disks using VLTI/GRAVITY and ALMA data, revealing significant misalignments in six disks and correlating shadow features with disk geometry.
Contribution
It provides the first comprehensive analysis combining inner and outer disk geometries to identify misalignments and shadow predictions in transition disks.
Findings
Six disks exhibit significant inner-outer disk misalignments.
Shadow positions in some disks match model predictions and scattered light images.
Complex morphologies limit precise shadow detection in some systems.
Abstract
For several transition disks (TDs), dark regions interpreted as shadows have been observed in scattered light imaging and are hypothesized to originate from misalignments between distinct disk regions. We aim to investigate the presence of misalignments in TDs. We study the inner disk geometries of 20 well-known transition disks with VLTI/GRAVITY observations and use complementary CO and CO molecular line data from ALMA to derive the orientation of the outer disk regions. We fit simple models to the GRAVITY data to derive the inner disks inclination and position angles. The outer disk geometries were derived from Keplerian fits to the ALMA velocity maps and compared to the inner disk constraints. We also predicted the locations of shadows for significantly misaligned systems. Our analysis reveals six disks to exhibit significant misalignments between their inner and outer…
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