English

OSSOS. VIII. The Transition Between Two Size Distribution Slopes in the Scattering Disk

Earth and Planetary Astrophysics 2018-05-02 v1

Abstract

The scattering trans-Neptunian Objects (TNOs) can be measured to smaller sizes than any other distant small-body population. We use the largest sample yet obtained, 68 discoveries, primarily by the Outer Solar System Origins Survey (OSSOS), to constrain the slope of its luminosity distribution, with sensitivity to much fainter absolute HH magnitudes than previous work. Using the analysis technique in Shankman et al. (2016), we confirm that a single slope for the HH-distribution is not an accurate representation of the scattering TNOs and Centaurs, and that a break in the distribution is required, in support of previous conclusions. A bright-end slope of αb=0.9\alpha_b=0.9 transitioning to a faint-end slope αf\alpha_f of 0.4-0.5 with a differential number contrast cc from 1 (a knee) to 10 (a divot) provides an acceptable match to our data. We find that break magnitudes HbH_b of 7.7 and 8.3, values both previously suggested for dynamically hot Kuiper belt populations, are equally non-rejectable for a range of αf\alpha_f and cc in our statistical analysis. Our preferred divot HH-distribution transitions to αf=0.5\alpha_f=0.5 with a divot of contrast c=3c=3 at Hb=8.3H_b=8.3, while our preferred knee HH-distribution transitions to αf=0.4\alpha_f=0.4 at Hb=7.7H_b=7.7. The intrinsic population of scattering TNOs required to match the OSSOS detections is 3×1063\times10^6 for Hr<12H_r<12, and 9×1049\times10^4 for Hr<8.66H_r<8.66 (D100D\gtrsim100~km), with Centaurs having an intrinsic population two orders of magnitude smaller.

Keywords

Cite

@article{arxiv.1803.07521,
  title  = {OSSOS. VIII. The Transition Between Two Size Distribution Slopes in the Scattering Disk},
  author = {S. M. Lawler and C. Shankman and JJ. Kavelaars and M. Alexandersen and M. T. Bannister and Y. -T. Chen and B. Gladman and W. C. Fraser and S. Gwyn and N. Kaib and J. -M. Petit and K. Volk},
  journal= {arXiv preprint arXiv:1803.07521},
  year   = {2018}
}

Comments

accepted for publication in AJ

R2 v1 2026-06-23T00:59:09.338Z