Motion of Planetesimals in the Hill Sphere of the Star Proxima Centauri
arXiv:2401.09086 · doi:10.1134/S0038094623060047
Abstract
The motion of planetesimals initially located in the feeding zone of the planet Proxima Centauri c, at distances of 500 AU from the star to the star's Hill sphere radius of 1200 AU was considered. In the analyzed non-gaseous model, the primary ejection of planetesimals from most of the feeding zone of an almost formed planet c to distances greater than 500 AU from the star occurred during the first 10 million years. Only for planetesimals originally located at the edges of the planet's feeding zone, the fraction of planetesimals that first reached 500 AU over the time greater than 10 million years was more than half. Some planetesimals could reach the outer part of the star's Hill sphere over hundreds of millions of years. Most of the planetesimals that first reached 500 AU from Proxima Centauri first reached 1200 AU from the star in less than 1 million years. In the considered model, the disk of planetesimals in the outer part of the star's Hill sphere was rather flat. The results may be of interest for understanding the motion of bodies in other exoplanetary systems, especially those with a single dominant planet. The strongly inclined orbits of bodies in the outer part of Proxima Centauri's Hill sphere can primarily result from bodies that entered the Hill sphere from outside. The radius of Proxima Centauri's Hill sphere is an order of magnitude smaller than the radius of the outer boundary of the Hills cloud in the Solar System and two orders of magnitude smaller than the radius of the Sun's Hill sphere. Therefore, it is difficult to expect the existence of a similarly massive cloud around this star as the Oort cloud around the Sun.
17 pages, 10 tables
References in corpus (10)
- Formation of pebble-pile planetesimals
- The early instability scenario: terrestrial planet formation during the giant planet instability, and the effect of collisional fragmentation
- Planet formation by pebble accretion in ringed disks
- Migration processes in the Solar System and their role in the evolution of the Earth and planets
- Interstellar Objects Outnumber Solar System Objects in the Oort Cloud
- Exogenous delivery of water to Mercury
- On the local and global properties of the gravitational spheres of influence
- Stable Orbits in the Feeding Zone of the Planet Proxima Centauri c
- Delivery of icy planetesimals to inner planets in the Proxima Centauri planetary system
- Dynamics and Origin of Comets: New Problems Appeared after the Rosetta Space Mission