New binaries from the SHINE survey
Abstract
We present the multiple stellar systems observed within the SpHere INfrared survey for Exoplanet (SHINE). SHINE searched for substellar companions to young stars using high contrast imaging. Although stars with known stellar companions within SPHERE field of view (<5.5 arcsec) were removed from the original target list, we detected additional stellar companions to 78 of the 463 SHINE targets observed so far. 27% of the systems have three or more components. Given the heterogeneity of the sample in terms of observing conditions and strategy, tailored routines were used for data reduction and analysis, some of which were specifically designed for these data sets. We then combined SPHERE data with literature and archival ones, TESS light curves and Gaia parallaxes and proper motions, to characterise these systems as completely as possible. Combining all data, we were able to constrain the orbits of 25 systems. We carefully assessed the completeness of our sample for the separation range 50-500 mas (period range a few years - a few tens of years), taking into account the initial selection biases and recovering part of the systems excluded from the original list due to their multiplicity. This allowed us to compare the binary frequency for our sample with previous studies and highlight some interesting trends in the mass ratio and period distribution. We also found that, for the few objects for which such estimate was possible, the values of the masses derived from dynamical arguments were in good agreement with the model predictions. Stellar and orbital spins appear fairly well aligned for the 12 stars having enough data, which favour a disk fragmentation origin. Our results highlight the importance of combining different techniques when tackling complex problems such as the formation of binaries and show how large samples can be useful for more than one purpose.
Cite
@article{arxiv.2103.13706,
title = {New binaries from the SHINE survey},
author = {M. Bonavita and R. Gratton and S. Desidera and V. Squicciarini and V. D'Orazi and A. Zurlo and B. Biller and G. Chauvin and C. Fontanive and M. Janson and S. Messina and F. Menard and M. Meyer and A. Vigan and H. Avenhaus and R. Asensio Torres and J. -L. Beuzit and A. Boccaletti and M. Bonnefoy and W. Brandner and F. Cantalloube and A. Cheetham and M. Cudel and S. Daemgen and P. Delorme and C. Desgrange and C. Dominik and N. Engler and P. Feautrier and M. Feldt and R. Galicher and A. Garufi and D. Gasparri and C. Ginski and J. Girard and A. Grandjean and J. Hagelberg and Th. Henning and S. Hunziker and M. Kasper and M. Keppler and E. Lagadec and A. -M. Lagrange and M. Langlois and J. Lannier and C. Lazzoni and H. Le Coroller and R. Ligi and M. Lombart and A. -L. Maire and S. Mazevet and D. Mesa and D. Mouillet and C. Moutou and A. Muller and S. Peretti and C. Perrot and S. Petrus and A. Potier and J. Ramos and E. Rickman and D. Rouan and G. Salter and M. Samland and T. Schmidt and E. Sissa and T. Stolker and J. Szulagyil and S. Udry and F. Wildi},
journal= {arXiv preprint arXiv:2103.13706},
year = {2022}
}
Comments
59 pages, 11 tables, 18 figures