Role of the Lidov-Kozai mechanism in transformation of high-inclined asteroids into near-Earth objects

Authors

  • Vinogradova T.A. Institute of Applied Astronomy, Russian Academy of Science, St. Petersburg, Russian Federation

UDC

523.44

Abstract

The Lidov-Kozai mechanism induces coupled long-period oscillations in the inclination and eccentricity of asteroid orbits depending on the argument of the perihelion $\omega$. When the inclination decreases, the eccentricity increases and reaches a maximum at the points $\omega = 90$°, 270°. Both circulation and libration of the argument of the perihelion can take place. The amplitude of the eccentricity oscillations in the case of large inclination can be very large. In this work, the possibility of transformation of main belt asteroids into near-Earth objects under the influence of this perturbation was investigated. Numerical integration of 139 selected asteroid orbits was performed with Jupiter in circular orbit as a perturbing body. As a result, it was found that some high-inclined asteroids which move far from the Earth orbit can be transformed into near-Earth objects at large time scales.

Keywords:

celestial mechanics, asteroids, impacts, secular perturbations, Lidov-Kozai mechanism

Author Biography

  • Tamara A. Vinogradova

    научный сотрудник Института прикладной астрономии РАН

References

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Issue

Pages

45-49

Section

Article

Dates

Submitted

October 31, 2017

Accepted

November 11, 2017

Published

December 28, 2017

How to Cite

[1]
Vinogradova, T.A., Role of the Lidov-Kozai mechanism in transformation of high-inclined asteroids into near-Earth objects. Ecological Bulletin of Research Centers of the Black Sea Economic Cooperation, 2017, № 4, pp. 45–49.

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