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Young asteroid families: exploring the limit between fission groups and collisional families


Asteroid families are groups of objects that have similar orbits. They can be produced as the result of a collision between a projectile andthe family parent body (collisional families), or because of the fission of a secondary body or of a low-energy impact on a rapidly rotating primary(fission clusters). Collisional families tend to be more dispersed in semi-major axis and they are usually identified in domains of proper elements. Fission clusters tend to be more compact and they are usually identified in mean-orbital elementsdomains.Among asteroid families, those that were created less than ~7 Myr ago can be dated with more precision using the Backward Integration Method (BIM), where the differences of the longitudesof nodes and pericenter of family members with respect to the parent body angles are tracked down in the past to check for mutual convergences. Recently, another approach based on close encounters between the alleged parent body and clones of family members drifting into the past has also been proposed to date young asteroid families. Four asteroid families, those of (3152) Jones, (7353) Kazuya, (108138)2001 GB11, and (909) Ulla, were also recently identified as very young using BIM.In this work we propose to use the method of family dating based on past close encounters to determine these four families ages and membership. Machine-learning technique will also be used on the results to objectively check for sub-families inside the larger group and for dating these sub-groups. Preliminary results for the (108138) 2001 GB11 family show that it is possible to find fission clusters inside collisional groups, and that this occurrence may appear in other asteroid families, such as that of Jones. ``Mixed'' asteroid families wherefission and collisional event occurred in short time intervals may be, therefore, more common than previously thought. (AU)

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Scientific publications (5)
(References retrieved automatically from Web of Science and SciELO through information on FAPESP grants and their corresponding numbers as mentioned in the publications by the authors)
CARRUBA, V; RIBEIRO, V, J.. The Zelima asteroid family: Resonant configuration and rotational fission clusters. Planetary and Space Science, v. 182, . (18/20999-6)
CARRUBA, V.; ALJBAAE, S.; LUCCHINI, A.. Machine-learning identification of asteroid groups. Monthly Notices of the Royal Astronomical Society, v. 488, n. 1, p. 1377-1386, . (18/20999-6)
PAVELA, DEBORA; NOVAKOVIC, BOJAN; CARRUBA, VALERIO; RADOVIC, VIKTOR. Analysis of the Karma asteroid family. Monthly Notices of the Royal Astronomical Society, v. 501, n. 1, p. 356-366, . (18/20999-6)
CARRUBA, V; ALJBAAE, S.; DOMINGOS, R. C.; LUCCHINI, A.; FURLANETO, P.. Machine learning classification of new asteroid families members. Monthly Notices of the Royal Astronomical Society, v. 496, n. 1, p. 540-549, . (18/20999-6)
CARRUBA, V; ALJBAAE, S.; DOMINGOS, R. C.. dentification of asteroid groups in the z(1) and z(2) nonlinear secular resonances through genetic algorithm. CELESTIAL MECHANICS & DYNAMICAL ASTRONOMY, v. 133, n. 6, . (18/20999-6)

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