English

The two rings of (50000) Quaoar

Earth and Planetary Astrophysics 2023-05-10 v2

Abstract

Quaoar is a classical Trans-Neptunian Object (TNO) with an area equivalent diameter of 1,100 km and an orbital semi-major axis of 43.3 astronomical units. Based on stellar occultations observed between 2018 and 2021, an inhomogeneous ring (Q1R, Quaoar's first ring) was detected around this body. Aims. A new stellar occultation by Quaoar was observed on August 9th, 2022 aiming to improve Quaoar's shape models and the physical parameters of Q1R while searching for additional material around the body. Methods. The occultation provided nine effective chords across Quaoar, pinning down its size, shape, and astrometric position. Large facilities, such as Gemini North and the Canada-France-Hawaii Telescope (CFHT), were used to obtain high acquisition rates and signal-to-noise ratios. The light curves were also used to characterize the Q1R ring (radial profiles and orbital elements). Results. Quaoar's elliptical fit to the occultation chords yields the limb with an apparent semi-major axis of 579.5±4.0579.5\pm4.0 km, apparent oblateness of 0.12±0.010.12\pm0.01, and area-equivalent radius of 543±2543\pm2 km. Quaoar's limb orientation is consistent with Q1R and Weywot orbiting in Quaoar's equatorial plane. The orbital radius of Q1R is refined to a value of 4,057±64,057\pm6 km. The radial opacity profile of the more opaque ring profile follows a Lorentzian shape that extends over 60 km, with a full width at half maximum (FWHM) of 5\sim5 km and a peak normal optical depth of 0.4. Besides the secondary events related to the already reported rings, new secondary events detected during the August 2022 occultation in three different data sets are consistent with another ring around Quaoar with a radius of 2,520±202,520\pm20 km, assuming the ring is circular and co-planar with Q1R. This new ring has a typical width of 10 km and a normal optical depth of \sim0.004. Like Q1R, it also lies outside Quaoar's classical Roche limit.

Keywords

Cite

@article{arxiv.2304.09237,
  title  = {The two rings of (50000) Quaoar},
  author = {C. L. Pereira and B. Sicardy and B. E. Morgado and F. Braga-Ribas and E. Fernández-Valenzuela and D. Souami and B. J. Holler and R. C. Boufleur and G. Margoti and M. Assafin and J. L. Ortiz and P. Santos-Sanz and B. Epinat and P. Kervella and J. Desmars and R. Vieira-Martins and Y. Kilic and A. R. Gomes-Júnior and J. I. B. Camargo and M. Emilio and M. Vara-Lubiano and M. Kretlow and L. Albert and C. Alcock and J. G. Ball and K. Bender and M. W. Buie and K. Butterfield and M. Camarca and J. H. Castro-Chacón and R. Dunford and R. S. Fisher and D. Gamble and J. C. Geary and C. L. Gnilka and K. D. Green and Z. D. Hartman and C-K. Huang and H. Januszewski and J. Johnston and M. Kagitani and R. Kamin and J. J. Kavelaars and J. M. Keller and K. R. de Kleer and M. J. Lehner and A. Luken and F. Marchis and T. Marlin and K. McGregor and V. Nikitin and R. Nolthenius and C. Patrick and S. Redfield and A. W. Rengstorf and M. Reyes-Ruiz and T. Seccull and M. F. Skrutskie and A. B. Smith and M. Sproul and A. W. Stephens and A. Szentgyorgyi and S. Sánchez-Sanjuán and E. Tatsumi and A. Verbiscer and S-Y. Wang and F. Yoshida and R. Young and Z-W. Zhang},
  journal= {arXiv preprint arXiv:2304.09237},
  year   = {2023}
}

Comments

Accepted for publication in Astronomy & Astrophysics (17-April-2023). 18 pages, 12 figures