Physical properties of the trans-Neptunian object (38628) Huya from a multi-chord stellar occultation
P. Santos-Sanz, J.L. Ortiz, B. Sicardy, M. Popescu, G., Benedetti-Rossi, N. Morales, M. Vara-Lubiano, J.I.B. Camargo, C.L. Pereira,, F.L. Rommel, M. Assafin, J. Desmars, F. Braga-Ribas, R. Duffard, J. Marques, Oliveira, R. Vieira-Martins, E. Fern\'andez-Valenzuela, B.E. Morgado

TL;DR
This study used a multi-chord stellar occultation to accurately determine the size, shape, and albedo of trans-Neptunian object (38628) Huya, providing new insights into its physical and internal properties.
Contribution
First multi-chord occultation observation of Huya enabling precise shape, size, and albedo measurements, and constraining internal density and presence of rings or atmosphere.
Findings
Projected diameter: 411 km with 7 km uncertainty.
Geometric albedo: 0.079 with 0.004 uncertainty.
No rings, debris, or atmosphere detected.
Abstract
Within our international program to obtain accurate physical properties of trans-Neptunian objects (TNOs) we predicted a stellar occultation by the TNO (38628) Huya of the star Gaia DR2 4352760586390566400 (mG = 11.5 mag.) for March 18, 2019. After an extensive observational campaign, we updated the prediction and it turned out to be favorable to central Europe. Therefore, we mobilized half a hundred professional and amateur astronomers, and the occultation was finally detected from 21 telescopes located at 18 sites. This makes the Huya event one of the best ever observed stellar occultation by a TNO in terms of the number of chords. We determine accurate size, shape, and geometric albedo, and we also provide constraints on the density and other internal properties of this TNO. The 21 positive detections of the occultation by Huya allowed us to obtain well-separated chords which…
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