Infrequent visitors of the Kozai kind: the dynamical lives of 2012 FC71, 2014 EK24, 2014 QD364, and 2014 UR
arXiv:1506.01627 · doi:10.1051/0004-6361/201526108
Abstract
Context. Asteroids with semi-major axes very close to that of a host planet can avoid node crossings when their nodal points are at perihelion and at aphelion. This layout protects the asteroids from close encounters, and eventual collisions, with the host planet. Aims. Here, we study the short-term dynamical evolution of four recently discovered near-Earth asteroids (NEAs) --2012 FC71, 2014 EK24, 2014 QD364, and 2014 UR-- that follow very Earth-like orbits. Methods. Our analysis is based on results of direct N-body calculations that use the most updated ephemerides and include perturbations from the eight major planets, the Moon, the barycentre of the Pluto-Charon system, and the three largest asteroids. Results. These four NEAs exhibit an orbital evolution unlike any other known near-Earth object (NEO). Beyond horseshoe, tadpole, or quasi-satellite trajectories, they follow co-orbital passing orbits relative to the Earth within the Kozai domain. Our calculations show that secular interactions induce librations of their relative argument of perihelion with respect to our planet but also to Venus, Mars, and Jupiter. Secular chaos is also present. The size of this transient population is probably large. Conclusions. Although some of these NEAs can remain orbitally stable for many thousands of years, their secular dynamics are substantially more complicated than commonly thought and cannot be properly described within the framework of the three-body problem alone owing to the overlapping of multiple secular resonances. Objects in this group are amongst the most atypical NEOs regarding favourable visibility windows because these are separated in time by many decades or even several centuries.
16 pages, 18 figures, 3 tables. Astronomy and Astrophysics, in press. Minor corrections
References in corpus (4)
- Chaos in navigation satellite orbits caused by the perturbed motion of the Moon
- Secular chaos and its application to Mercury, hot Jupiters, and the organization of planetary systems
- Asteroid 2014 OL339: yet another Earth quasi-satellite
- Observational Constraints on the Catastrophic Disruption Rate of Small Main Belt Asteroids
Cited by in corpus (8)
- Asteroid (469219) 2016 HO3, the smallest and closest Earth quasi-satellite
- Far from random: dynamical groupings among the NEO population
- Dynamical evolution of near-Earth asteroid 1991 VG
- A trio of horseshoes: past, present and future dynamical evolution of Earth co-orbital asteroids 2015 XX169, 2015 YA and 2015 YQ1
- Asteroid 2017 FZ2 et al.: signs of recent mass-shedding from YORP?
- Understanding the evolution of Atira-class asteroid 2019 AQ3, a major step towards the future discovery of the Vatira population
- Kozai-Lidov Resonant Behavior among Atira-class Asteroids
- Analysis of the dynamical evolution of the Quadrantid meteoroid stream