English

The Spin-Barrier Ratio for S and C-Type Main Asteroids Belt

Earth and Planetary Astrophysics 2019-03-29 v1

Abstract

Asteroids of size larger than 0.15 km generally do not have periods P smaller than about 2.2 hours, a limit known as cohesionless spin-barrier. This barrier can be explained by means of the cohesionless rubble-pile structure model. In this paper we will explore the possibility for the observed spin-barrier value to be different for C and S-type Main Asteroids Belt (MBAs). On the basis of the actual bulk density values, the expected ratio between the maximum rotation periods is PC/PS1.4±0.3P_C/P_S \approx 1.4 \pm 0.3. Using the data available in the asteroid LightCurve Data Base (LCDB) we have found that, as regards the mean spin-barrier values and for asteroids in the 4-20 km range, there is a little difference between the two asteroids population with a ratio PC/PS1.20±0.04P_C/P_S \approx 1.20 \pm 0.04. Uncertainties are still high, mainly because of the small number of MBAs with known taxonomic class in the considered range. In the 4-10 km range, instead, the ratio between the spin-barriers seems closer to 1 because PC/PS1.11±0.05P_C/P_S \approx 1.11 \pm 0.05. This behavior could be a direct consequence of a different cohesion strength for C and S-type asteroids of which the ratio can be estimated.

Keywords

Cite

@article{arxiv.1903.11876,
  title  = {The Spin-Barrier Ratio for S and C-Type Main Asteroids Belt},
  author = {A. Carbognani},
  journal= {arXiv preprint arXiv:1903.11876},
  year   = {2019}
}

Comments

10 pages, 6 figures