Mid - infrared interferometry of massive young stellar objects II Evidence for a circumstellar disk surrounding the Kleinmann - Wright object
R. Follert (1, 2), H. Linz (1), B. Stecklum (2), R. van Boekel (1),, Th. Henning (1), M. Feldt (1), T.M. Herbst (1, 3), Ch. Leinert (1) ((1), Max-Planck-Institut fuer Astronomie, Heidelberg, Germany, (2) Thueringer, Landessternwarte Tautenburg, Tautenburg, Germany

TL;DR
This study uses mid-infrared interferometry and radiative transfer modeling to reveal a circumstellar disk around the Kleinmann-Wright object, providing insights into massive star formation processes.
Contribution
It demonstrates the effectiveness of combining IR interferometry with radiative transfer simulations to resolve the inner structure of MYSOs, specifically identifying a circumstellar disk without requiring an envelope.
Findings
Resolved the mid-infrared emission region of the MYSO.
Identified a 0.1 solar mass circumstellar disk at 76° inclination.
Showed that combining interferometry with modeling reduces SED analysis ambiguities.
Abstract
The formation scenario for massive stars is still under discussion. To further constrain current theories, it is vital to spatially resolve the structures from which material accretes onto massive young stellar objects (MYSOs). Due to the small angular extent of MYSOs, one needs to overcome the limitations of conventional thermal infrared imaging, regarding spatial resolution, in order to get observational access to the inner structure of these objects.We employed mid - infrared interferometry, using the MIDI instrument on the ESO /VLTI, to investigate the Kleinmann - Wright Object, a massive young stellar object previously identified as a Herbig Be star precursor. Dispersed visibility curves in the N- band (8 - 13 {\mu}m) have been obtained at 5 interferometric baselines. We show that the mid - infrared emission region is resolved. A qualitative analysis of the data indicates a non -…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Stellar, planetary, and galactic studies · Astro and Planetary Science
