The Orbit and Size-Frequency Distribution of Long Period Comets Observed by Pan-STARRS1
Abstract
We introduce a new technique to estimate the comet nuclear size frequency distribution (SFD) that combines a cometary activity model with a survey simulation and apply it to 150 long period comets (LPC) detected by the Pan-STARRS1 near-Earth object survey. The debiased LPC size-frequency distribution is in agreement with previous estimates for large comets with nuclear diameter ~km but we measure a significant drop in the SFD slope for small objects with diameters ~km and approaching only ~m diameter. Large objects have a slope while small objects behave as where the SFD is and represents the cometary nuclear absolute magnitude. The total number of LPCs that are ~km diameter and have perihelia ~au is while there are only objects with diameters ~m due to the shallow slope of the SFD for diameters ~m. We estimate that the total number of `potentially active' objects with diameters ~km in the Oort cloud, objects that would be defined as LPCs if their perihelia evolved to ~au, is with a combined mass of . The debiased LPC orbit distribution is broadly in agreement with expectations from contemporary dynamical models but there are discrepancies that could point towards a future ability to disentangle the relative importance of stellar perturbations and galactic tides in producing the LPC population.
Keywords
Cite
@article{arxiv.1905.13458,
title = {The Orbit and Size-Frequency Distribution of Long Period Comets Observed by Pan-STARRS1},
author = {Benjamin Boe and Robert Jedicke and Karen J. Meech and Paul Wiegert and Robert J. Weryk and K. C. Chambers and L. Denneau and N. Kaiser and R. P. Kudritzki and E. A. Magnier and R. J. Wainscoat and C. Waters},
journal= {arXiv preprint arXiv:1905.13458},
year = {2019}
}
Comments
accepted for publication in Icarus