Centaur 2013 VZ70: Debris from Saturn’s irregular moon population?

dc.contributor.authorFuente Marcos, Carlos de la
dc.contributor.authorFuente Marcos, Raúl de la
dc.date.accessioned2023-06-22T10:53:13Z
dc.date.available2023-06-22T10:53:13Z
dc.date.issued2022-01-10
dc.description.abstractContext. Saturn has an excess of irregular moons. This is thought to be the result of past collisional events. Debris produced during such episodes in the neighborhood of a host planet can evolve into co-orbitals trapped in quasi-satellite and/or horseshoe resonant states. A recently announced centaur, 2013 VZ70, follows an orbit that could be compatible with those of prograde Saturn’s co-orbitals. Aims. We perform an exploration of the short-term dynamical evolution of 2013 VZ70 to confirm or reject a co-orbital relationship with Saturn. A possible connection with Saturn’s irregular moon population is also investigated. Methods. We studied the evolution of 2013 VZ70 backward and forward in time using N-body simulations, factoring uncertainties into the calculations. We computed the distribution of mutual nodal distances between this centaur and a sample of moons. Results. We confirm that 2013 VZ70 is currently trapped in a horseshoe resonant state with respect to Saturn but that it is a transient co-orbital. We also find that 2013 VZ70 may become a quasi-satellite of Saturn in the future and that it may experience brief periods of capture as a temporary irregular moon. This centaur might also pass relatively close to known irregular moons of Saturn. Conclusions. Although an origin in trans-Neptunian space is possible, the hostile resonant environment characteristic of Saturn’s neighborhood favors a scenario of in situ formation via impact, fragmentation, or tidal disruption as 2013 VZ70 can experience encounters with Saturn at very low relative velocity. An analysis of its orbit within the context of those of the moons of Saturn suggests that 2013 VZ70 could be related to the Inuit group, particularly Siarnaq, the largest and fastest rotating member of the group.
dc.description.facultyFac. de Ciencias Matemáticas
dc.description.refereedTRUE
dc.description.sponsorshipMinisterio de Economía y Competitividad (MINECO)
dc.description.statuspub
dc.eprint.idhttps://eprints.ucm.es/id/eprint/73981
dc.identifier.doi10.1051/0004-6361/202142166
dc.identifier.issn0004-6361
dc.identifier.officialurlhttps://www.edpsciences.org/en/
dc.identifier.urihttps://hdl.handle.net/20.500.14352/71838
dc.issue.number10
dc.journal.titleAstronomy and astrophysics
dc.language.isospa
dc.publisherEDP Sciences
dc.relation.projectIDESP2017-87 813-R
dc.rightsAtribución 3.0 España
dc.rights.accessRightsopen access
dc.rights.urihttps://creativecommons.org/licenses/by/3.0/es/
dc.subject.cdu52
dc.subject.keywordMinor planets
dc.subject.keywordAsteroids: general – minor planets
dc.subject.keywordAsteroids: individual: 2013 VZ70
dc.subject.keywordPlanets and satellites: individual: Saturn – methods: numerical – celestial mechanics
dc.subject.keywordMethods: data analysis
dc.subject.ucmAstronomía (Matemáticas)
dc.subject.unesco21 Astronomía y Astrofísica
dc.titleCentaur 2013 VZ70: Debris from Saturn’s irregular moon population?
dc.typejournal article
dc.volume.number657
dcterms.referencesAarseth, S. J. 2003, Gravitational N-Body Simulations (Cambridge: Cambridge University Press), 27 Alexandersen, M., Greenstreet, S., Gladman, B., et al. 2018, in AAS/Division for Planetary Sciences Meeting Abstracts, Vol. 50, 305.09 Alexandersen, M., Greenstreet, S., Gladman, B., et al. 2020, in AAS/Division for Planetary Sciences Meeting Abstracts, Vol. 52, 206.06 Alexandersen, M., Greenstreet, S., Gladman, B., et al. 2021, PSJ, 2, 212 Ashton, E., Gladman, B., & Beaudoin, M. 2021, PSJ, 2, 158 Bannister, M. T., Kavelaars, J. J., Petit, J.-M., et al. 2016, AJ, 152, 70 Bannister, M. T., Kavelaars, J. J., Gladman, B. J., et al. 2021, Minor Planet Electronic Circulars, 2021-Q55 Castillo-Rogez, J., Vernazza, P., & Walsh, K. 2019, MNRAS, 486, 538 de la Barre, C. M., Kaula, W. M., & Varadi, F. 1996, Icarus, 121, 88 de la Fuente Marcos, C. & de la Fuente Marcos, R. 2012, MNRAS, 427, 728 de la Fuente Marcos, C. & de la Fuente Marcos, R. 2016, MNRAS, 462, 3344 de la Fuente Marcos, C. & de la Fuente Marcos, R. 2021a, MNRAS, 501, 6007 de la Fuente Marcos, C., de la Fuente Marcos, R., Licandro, J., et al. 2021b, A&A, 649, A85 Denk, T. & Mottola, S. 2019, Icarus, 322, 80 Dermott, S. F. & Murray, C. D. 1981, Icarus, 48, 12 Everhart, E. 1973, AJ, 78, 316 Fedorets, G., Granvik, M., & Jedicke, R. 2017, Icarus, 285, 83 Freedman, D. & Diaconis, P. 1981, Zeitschrift für Wahrscheinlichkeitstheorie und Verwandte Gebiete, 57, 453 Gallardo, T. 2006, Icarus, 184, 29 Ginsburg, A., Sip˝ocz, B. M., Brasseur, C. E., et al. 2019, AJ, 157, 98 Giorgini, J. 2011, in Journées Systèmes de Référence Spatio-temporels 2010, ed. N. Capitaine, 87–87 Giorgini, J. D. 2015, IAUGA, 22, 2256293 Gladman, B., Kavelaars, J., Allen, R. L., et al. 2000, IAU Circ., 7513 Grav, T., Bauer, J. M., Mainzer, A. K., et al. 2015, ApJ, 809, 3 Harris, C. R., Millman, K. J., van der Walt, S. J., et al. 2020, Nature, 585, 357 Holman, M., Gladman, B., Grav, T., et al. 2001, Minor Planet Electronic Circulars, 2001-U42 Hou, X. Y., Scheeres, D. J., & Liu, L. 2014, MNRAS, 437, 1420 Huang, Y., Li, M., Li, J., et al. 2019, MNRAS, 488, 2543 Hunter, J. D. 2007, Computing in Science and Engineering, 9, 90
dspace.entity.typePublication

Download

Original bundle

Now showing 1 - 1 of 1
Loading...
Thumbnail Image
Name:
delafuente_centaur2013-by.pdf
Size:
18.64 MB
Format:
Adobe Portable Document Format

Collections