The asymmetric structure of the inner disc around HD 142527 A with VLTI/MATISSE
M. B. Scheuck, R. van Boekel, Th. Henning, P. A. Boley, J. Varga, A. Matter, A. Penzlin, J. H. Leftley, L. van Haastere, K. Perraut, L. Labadie, M. Min, J. P. Berger, L. B. F. M. Waters, S. Zieba, B. Lopez, F. Lykou, J.-C. Augereau, P. Cruzal\`ebes, W. C. Danchi

TL;DR
This study uses multi-epoch VLTI/MATISSE data to reveal a complex, asymmetric, and time-variable inner disc structure around HD 142527 A, influenced by its close binary companion.
Contribution
First comprehensive multi-wavelength interferometric analysis showing temporal variability and asymmetry in the inner disc of HD 142527 A.
Findings
Inner disc rim located at ~0.1 au, closer than typical sublimation radius.
Detected azimuthal asymmetry and temporal variability in the inner disc.
Inner disc structure likely affected by the close binary companion.
Abstract
Circumstellar discs, and especially their inner regions, covering ranges from <1 au to a few astronomical units, are the birthplaces of terrestrial planets. The inner regions are thought to be similarly diverse in structure as the well-observed outer regions probed by ALMA. Combining data and results from previous studies of the VLTI/PIONIER and VLTI/GRAVITY instruments with new, multi-epoch VLTI/MATISSE observations, we aim to provide a comprehensive picture of the structure of the inner regions of the circumstellar disc around the F-type Herbig Ae/Be star HD 142527 A, the primary of a binary star system. We model the multi-wavelength interferometric data using a parametrised, geometrically thin disc model, allowing for azimuthal asymmetry, exploring a first-order disc modulation and an off-centre Gaussian component. We find time-variable structures in the N-band observables, which we…
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