A ring as a model of the main belt in planetary ephemerides
arXiv:1004.3119 · doi:10.1051/0004-6361/200913346
Abstract
We assess the ability of a solid ring to model a global perturbation induced by several thousands of main-belt asteroids. The ring is first studied in an analytical framework that provides an estimate of all the ring's parameters excepting mass. In the second part, numerically estimated perturbations on the Earth-Mars, Earth-Venus, and Earth-Mercury distances induced by various subsets of the main-belt population are compared with perturbations induced by a ring. To account for large uncertainties in the asteroid masses, we obtain results from Monte Carlo experiments based on asteroid masses randomly generated according to available data and the statistical asteroid model. The radius of the ring is analytically estimated at 2.8 AU. A systematic comparison of the ring with subsets of the main belt shows that, after removing the 300 most perturbing asteroids, the total main-belt perturbation of the Earth-Mars distance reaches on average 246 m on the 1969-2010 time interval. A ring with appropriate mass is able to reduce this effect to 38 m. We show that, by removing from the main belt ~240 asteroids that are not necessarily the most perturbing ones, the corresponding total perturbation reaches on average 472 m, but the ring is able to reduce it down to a few meters, thus accounting for more than 99% of the total effect.
18 pages, accepted in A&A
Cited by in corpus (6)
- Electron density distribution and solar plasma correction of radio signals using MGS, MEX and VEX spacecraft navigation data and its application to planetary ephemerides
- Testing Theories of Gravity with Planetary Ephemerides
- Propagation and Estimation of the Dynamical Behaviour of Gravitationally Interacting Rigid Bodies
- Calibration of the angular momenta of the minor planets in the solar system
- Improving the Solar Wind Density Model Used in Processing of Spacecraft Ranging Observations
- A new multiple-arc model of the resonant Kuiper belt objects -- Plutinos