English

Precision measurement of a brown dwarf mass in a binary system in the microlensing event OGLE-2019-BLG-0033/MOA-2019-BLG-035

Solar and Stellar Astrophysics 2022-07-20 v3 Earth and Planetary Astrophysics Astrophysics of Galaxies

Abstract

Context. Brown dwarfs are poorly understood transition objects between stars and planets, with several competing mechanisms having been proposed for their formation. Mass measurements are generally difficult for isolated objects but also for brown dwarfs orbiting low-mass stars, which are often too faint for spectroscopic follow-up. Aims. Microlensing provides an alternative tool for the discovery and investigation of such faint systems. Here we present the analysis of the microlensing event OGLE-2019-BLG-0033/MOA-2019-BLG-035, which is due to a binary system composed of a brown dwarf orbiting a red dwarf. Methods. Thanks to extensive ground observations and the availability of space observations from Spitzer, it has been possible to obtain accurate estimates of all microlensing parameters, including parallax, source radius and orbital motion of the binary lens. Results. After accurate modeling, we find that the lens is composed of a red dwarf with mass M1=0.149±0.010MM_1 = 0.149 \pm 0.010M_\odot and a brown dwarf with mass M2=0.0463±0.0031MM_2 = 0.0463 \pm 0.0031M_\odot, at a projected separation of a=0.585a_\perp = 0.585 au. The system has a peculiar velocity that is typical of old metal-poor populations in the thick disk. Percent precision in the mass measurement of brown dwarfs has been achieved only in a few microlensing events up to now, but will likely become common with the Roman space telescope.

Keywords

Cite

@article{arxiv.2203.04034,
  title  = {Precision measurement of a brown dwarf mass in a binary system in the microlensing event OGLE-2019-BLG-0033/MOA-2019-BLG-035},
  author = {A. Herald and A. Udalski and V. Bozza and P. Rota and I. A. Bond and J. C. Yee and S. Sajadian and P. Mroz and R. Poleski and J. Skowron and M. K. Szymanski and I. Soszynski and P. Pietrukowicz and S. Kozlowski and K. Ulaczyk and K. A. Rybicki and P. Iwanek and M. Wrona and M. Gromadzki and F. Abe and R. Barry and D. P. Bennett and A. Bhattacharya and A. Fukui and H. Fujii and Y. Hirao and Y. Itow and R. Kirikawa and I. Kondo and N. Koshimoto and Y. Matsubara and S. Matsumoto and S. Miyazaki and Y. Muraki and G. Olmschenk and C. Ranc and A. Okamura and N. J. Rattenbury and Y. Satoh and T. Sumi and D. Suzuki and S. Ishitani Silva and T. Toda and P. J. Tristram and A. Vandorou and H. Yama and C. A. Beichman and G. Bryden and S. Calchi Novati and S. Carey and B. S. Gaudi and A. Gould and C. B. Henderson and S. Johnson and Y. Shvartzvald and W. Zhu and M. Dominik and M. Hundertmark and U. G. Jorgensen and P. Longa-Pena and J. Skottfelt and J. Tregloan-Reed and N. Bach-Moller and M. Burgdorf and G. D'Ago and L. Haikala and J. Hitchcock and E. Khalouei and N. Peixinho and S. Rahvar and C. Snodgrass and J. Southworth and P. Spyratos and W. Zang and H. Yang and S. Mao and E. Bachelet and D. Maoz and R. A. Street and Y. Tsapras and G. W. Christie and T. Cooper and L. de Almeida and J. -D. do Nascimento and J. Green and C. Han and S. Hennerley and A. Marmont and J. McCormick and L. A. G. Monard and T. Natusch and R. Pogge},
  journal= {arXiv preprint arXiv:2203.04034},
  year   = {2022}
}

Comments

13 pages, 6 figures