A near-infrared interferometric survey of debris disc stars. III. First statistics based on 42 stars observed with CHARA/FLUOR
O. Absil, D. Defr\`ere, V. Coud\'e du Foresto, E. Di Folco, A., M\'erand, J.-C. Augereau, S. Ertel, C. Hanot, P. Kervella, B. Mollier, N., Scott, X. Che, J. D. Monnier, N. Thureau, P. G. Tuthill, T. A. ten, Brummelaar, H. A. McAlister, J. Sturmann, L. Sturmann, N. Turner

TL;DR
This study uses high-precision interferometry to measure near-infrared dust emission around 42 nearby stars, revealing a 28% occurrence rate of hot dust, with correlations to stellar type and cold dust presence, providing new insights into exozodiacal dust phenomena.
Contribution
First statistical survey of near-infrared exozodiacal dust around a diverse sample of stars using CHARA/FLUOR, highlighting correlations with stellar properties and cold dust presence.
Findings
Detected near-infrared excess around 13 stars, mostly due to hot dust.
Occurrence rate of bright exozodiacal discs is about 28%.
Correlations found between dust presence, spectral type, and cold dust.
Abstract
(Abridged) Dust is expected to be ubiquitous in extrasolar planetary systems owing to the dynamical activity of minor bodies. Inner dust populations are, however, still poorly known because of the high contrast and small angular separation with respect to their host star. We aim to determine the level of near-infrared exozodiacal dust emission around a sample of 42 nearby main sequence stars with spectral types ranging from A to K and to investigate its correlation with various stellar parameters and with the presence of cold dust belts. We use high-precision K-band visibilities obtained with the FLUOR interferometer on the shortest baseline of the CHARA array. The calibrated visibilities are compared with the expected visibility of the stellar photosphere to assess whether there is an additional, fully resolved circumstellar emission. Near-infrared circumstellar emission amounting to…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astrophysics and Star Formation Studies · Astronomy and Astrophysical Research
