English

Deep Images of the Galactic Center with GRAVITY

Astrophysics of Galaxies 2022-01-19 v1

Abstract

Stellar orbits at the Galactic Center provide a very clean probe of the gravitational potential of the supermassive black hole. They can be studied with unique precision, beyond the confusion limit of a single telescope, with the near-infrared interferometer GRAVITY. Imaging is essential to search the field for faint, unknown stars on short orbits which potentially could constrain the black hole spin. Furthermore, it provides the starting point for astrometric fitting to derive highly accurate stellar positions. Here, we present GR\mathrm{G^R}, a new imaging tool specifically designed for Galactic Center observations with GRAVITY. The algorithm is based on a Bayesian interpretation of the imaging problem, formulated in the framework of information field theory and building upon existing works in radio-interferometric imaging. Its application to GRAVITY observations from 2021 yields the deepest images to date of the Galactic Center on scales of a few milliarcseconds. The images reveal the complicated source structure within the central 100mas100\,\mathrm{mas} around Sgr A*, where we detected the stars S29 and S55 and confirm S62 on its trajectory, slowly approaching Sgr A*. Furthermore, we were able to detect S38, S42, S60, and S63 in a series of exposures for which we offset the fiber from Sgr A*. We provide an update on the orbits of all aforementioned stars. In addition to these known sources, the images also reveal a faint star moving to the west at a high angular velocity. We cannot find any coincidence with any known source and, thus, we refer to the new star as S300. From the flux ratio with S29, we estimate its K-band magnitude as mK(S300)19.019.3m_\mathrm{K}\left(\mathrm{S300}\right)\simeq 19.0 - 19.3. Images obtained with CLEAN confirm the detection.

Keywords

Cite

@article{arxiv.2112.07477,
  title  = {Deep Images of the Galactic Center with GRAVITY},
  author = {GRAVITY Collaboration and R. Abuter and N. Aimar and A. Amorim and P. Arras and M. Bauböck and J. P. Berger and H. Bonnet and W. Brandner and G. Bourdarot and V. Cardoso and Y. Clénet and R. Davies and P. T. de Zeeuw and J. Dexter and Y. Dallilar and A. Drescher and F. Eisenhauer and T. Enßlin and N. M. Förster Schreiber and P. Garcia and F. Gao and E. Gendron and R. Genzel and S. Gillessen and M. Habibi and X. Haubois and G. Heißel and T. Henning and S. Hippler and M. Horrobin and A. Jiménez-Rosales and L. Jochum and L. Jocou and A. Kaufer and P. Kervella and S. Lacour and V. Lapeyrère and J. -B. Le Bouquin and P. Léna and D. Lutz and F. Mang and M. Nowak and T. Ott and T. Paumard and K. Perraut and G. Perrin and O. Pfuhl and S. Rabien and J. Shangguan and T. Shimizu and S. Scheithauer and J. Stadler and O. Straub and C. Straubmeier and E. Sturm and L. J. Tacconi and K. R. W. Tristram and F. Vincent and S. von Fellenberg and I. Waisberg and F. Widmann and E. Wieprecht and E. Wiezorrek and J. Woillez and S. Yazici and A. Young and G. Zins},
  journal= {arXiv preprint arXiv:2112.07477},
  year   = {2022}
}

Comments

24 pages, 14 figures