arXiv · 1608.05410
Rocky Planet Formation: Quick and Neat
Abstract
We reconsider the commonly held assumption that warm debris disks are tracers of terrestrial planet formation. The high occurrence rate inferred for Earth-mass planets around mature solar-type stars based on exoplanet surveys (roughly 20%) stands in stark contrast to the low incidence rate (less than 2-3%) of warm dusty debris around solar-type stars during the expected epoch of terrestrial planet assembly (roughly 10 Myr). If Earth-mass planets at AU distances are a common outcome of the planet formation process, this discrepancy suggests that rocky planet formation occurs more quickly and/or is much neater than traditionally believed, leaving behind little in the way of a dust signature. Alternatively, the incidence rate of terrestrial planets has been overestimated or some previously unrecognized physical mechanism removes warm dust efficiently from the terrestrial planet region. A promising removal mechanism is gas drag in a residual gaseous disk with a surface density of roughly or somewhat more than 0.001% of the minimum mass solar nebula.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Scott J. Kenyon, Joan R. Najita, Benjamin C. Bromley. 2016-08-18. Rocky Planet Formation: Quick and Neat. https://doi.org/10.3847/0004-637x%2F831%2F1%2F8
Cite the original work for its findings. Save a collection to share your selection of sources.