On the identification of the first two young asteroid families in g-type non-linear secular resonances

Author:

Carruba V12ORCID,Aljbaae S34ORCID,Knežević Z5ORCID,Mahlke M6ORCID,Masiero J R7ORCID,Roig F8ORCID,Domingos R C9ORCID,Huaman M10ORCID,Alves A1ORCID,Martins B S1ORCID,Caritá G3ORCID,Lourenço M1ORCID,Destouni S C11ORCID

Affiliation:

1. São Paulo State University (UNESP), School of Natural Sciences and Engineering , Guaratinguetá, SP, 12516-410 , Brazil

2. Laboratório Interinstitucional de e-Astronomia - LIneA , RJ 20765-000 , Brazil

3. National Space Research Institute (INPE), Division of Space Mechanics and Control , C.P. 515, 12227-310, São José dos Campos, SP , Brazil

4. Make The Way, R. Elvira Ferraz , 250 - FL Office 305 e 306 - Vila Olãmpia, São Paulo - SP, 04545-015 , Brazil

5. Serbian Academy of Sciences and Arts , 11000 Belgrade, R. Serbia

6. Institut d’Astrophysique Spatiale, Université Paris-Saclay , CNRS, F-91405 Orsay , France

7. Caltech/IPAC , Pasadena, CA 91125 , USA

8. Observatório Nacional/ON-COAST , Rio de Janeiro, RJ 20921 , Brazil

9. São Paulo State University (UNESP), São João da Boa Vista , SP, 13876-750 , Brazil

10. Universidad Tecnológica del Perú (UTP) , Cercado de Lima, 15046, Perú

11. Chalmers University of Technology , SE-412 96 Gothenburg , Sweden

Abstract

ABSTRACT Linear secular resonances happen when there is a commensurability between the precession frequency of the pericenter, g, or longitude of the node, s, of an asteroid and a planet. Non-linear resonances are higher order combinations of these frequencies. Here, we studied the three most diffusive g-type non-linear secular resonances using Artificial Neural Networks. We identified a population of more than 2100 resonant objects in the g − 2g6 + g5 and g − 3g6 + 2g5 resonances. This allows the creation of a Convolutional Neural Network model for the g − 2g6 + g5 resonance, able to predict the status of several thousands of asteroids in seconds. We identified 12 new possible dynamical groups among the resonant population, including the 5507 and 170776 families, which have both estimated ages of less than 7 Myr. These are the two first-ever identified young families in resonant configurations of the investigated resonances, which allows for setting limits on their original ejection velocity field.

Funder

Simons Foundation

CNPq

FAPESP

FINEP

CAPES

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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