Orbital Characterization of a Newly Discovered Small Satellite Around Quaoar

Fuente: arXiv
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Main Authors: Proudfoot, Benjamin, Nolthenius, Richard, Holler, Bryan J., de Souza-Feliciano, Ana Carolina, Rommel, Flavia L., Collyer, Cameron, Grundy, Will M., Fernández-Valenzuela, Estela
Format: Preprint
Published: 2025
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author Proudfoot, Benjamin
Nolthenius, Richard
Holler, Bryan J.
de Souza-Feliciano, Ana Carolina
Rommel, Flavia L.
Collyer, Cameron
Grundy, Will M.
Fernández-Valenzuela, Estela
author_facet Proudfoot, Benjamin
Nolthenius, Richard
Holler, Bryan J.
de Souza-Feliciano, Ana Carolina
Rommel, Flavia L.
Collyer, Cameron
Grundy, Will M.
Fernández-Valenzuela, Estela
contents Recent observations of a stellar occultation have revealed the presence of a previously undiscovered small satellite around Quaoar. Orbiting near Quaoar's unusual ring system, this new satellite has the potential to provide significant insights into the formation and evolution of Quaoar and its ring system. In this letter, we characterize the orbit of this newly discovered satellite, finding that it is likely on a $3.6^{+0.5}_{-0.3}$-day orbit, plausibly placing it near a 5:3 mean motion resonance with Quaoar's outermost known ring. Examining the possibility of observing the newly discovered satellite with further stellar occultations, we estimate that $\sim$hundreds of observing stations are required for recovery, since phase information about its orbit was rapidly lost after the lone detection. We also attempted to recover the satellite in JWST NIRCam imaging of Quaoar, but find no convincing detection. This non-detection is limited by the accuracy of the available NIRCam PSF models, as well as the satellite's extreme faintness and close-in orbital separation. Therefore, current-generation telescopes will likely struggle to directly image this new satellite, but near-future 30-meter-class telescopes should prove capable of detecting it. Discovery of such a satellite provides evidence that the rings around Quaoar may have been part of an initially broad collisional disk that has evolved considerably since its formation. To further explore this hypothesis, we encourage follow-up observations of the rings and satellites with stellar occultations and direct imaging, as well as updated hydrodynamical, collisional, and tidal modeling of the system.
format Preprint
id arxiv_https___arxiv_org_abs_2511_07370
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Orbital Characterization of a Newly Discovered Small Satellite Around Quaoar
Proudfoot, Benjamin
Nolthenius, Richard
Holler, Bryan J.
de Souza-Feliciano, Ana Carolina
Rommel, Flavia L.
Collyer, Cameron
Grundy, Will M.
Fernández-Valenzuela, Estela
Earth and Planetary Astrophysics
Recent observations of a stellar occultation have revealed the presence of a previously undiscovered small satellite around Quaoar. Orbiting near Quaoar's unusual ring system, this new satellite has the potential to provide significant insights into the formation and evolution of Quaoar and its ring system. In this letter, we characterize the orbit of this newly discovered satellite, finding that it is likely on a $3.6^{+0.5}_{-0.3}$-day orbit, plausibly placing it near a 5:3 mean motion resonance with Quaoar's outermost known ring. Examining the possibility of observing the newly discovered satellite with further stellar occultations, we estimate that $\sim$hundreds of observing stations are required for recovery, since phase information about its orbit was rapidly lost after the lone detection. We also attempted to recover the satellite in JWST NIRCam imaging of Quaoar, but find no convincing detection. This non-detection is limited by the accuracy of the available NIRCam PSF models, as well as the satellite's extreme faintness and close-in orbital separation. Therefore, current-generation telescopes will likely struggle to directly image this new satellite, but near-future 30-meter-class telescopes should prove capable of detecting it. Discovery of such a satellite provides evidence that the rings around Quaoar may have been part of an initially broad collisional disk that has evolved considerably since its formation. To further explore this hypothesis, we encourage follow-up observations of the rings and satellites with stellar occultations and direct imaging, as well as updated hydrodynamical, collisional, and tidal modeling of the system.
title Orbital Characterization of a Newly Discovered Small Satellite Around Quaoar
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2511.07370