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We investigate the equilibrium points and orbits around asteroid 1333 Cevenola by considering the full gravitational potential caused by the 3D irregular shape. The gravitational potential and effective potential of asteroid 1333 Cevenola are calculated. The zero-velocity curves for a massless particle orbiting in the gravitational environment have been discussed. The linearized dynamic equation, the characteristic equation, and the conserved quantity of the equilibria for the large-size-ratio binary asteroid system have been derived. It is found that there are totally five equilibrium points close to 1333 Cevenola. The topological cases of the outside equilibrium points have a staggered distribution. The simulation of orbits in the full gravitational potential caused by the 3D irregular shape of 1333 Cevenola shows that the moonlet’s orbit is more likely to be stable if the orbit inclination is small.

Publication history
Copyright
Acknowledgements

Publication history

Received: 11 February 2018
Accepted: 18 May 2018
Published: 06 September 2018
Issue date: December 2018

Copyright

© Tsinghua University Press 2018

Acknowledgements

This research was supported by the National Natural Science Foundation of China (No. 11772356) and China Postdoctoral Science Foundation-General Program (No. 2017M610875).

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