Assessing the contribution of Centaur impacts to ice giant luminosities
arXiv:1509.05062 · doi:10.1016/j.icarus.2015.09.025
Abstract
Voyager 2 observations revealed that the internal luminosity of Neptune is an order of magnitude higher than that of Uranus. If the two planets have similar interior structures and cooling histories, the luminosity of Neptune can only be explained by invoking some energy source beyond gravitational contraction. This paper investigates whether Centaur impacts could provide the energy necessary to produce the luminosity of Neptune. The major findings are (1) that impacts on both Uranus and Neptune are too infrequent to provide luminosities of order the observed value for Neptune, even for optimistic impact-rate estimates, and (2) that Uranus and Neptune rarely have significantly different impact-generated luminosities at any given time. Uranus and Neptune most likely have structural differences that force them to cool and contract at different rates.
19 pages, including 4 figures. Accepted for publication in Icarus
References in corpus (11)
- The Active Centaurs
- The Scattered Disk as the source of the Jupiter Family comets
- The Kuiper Belt Luminosity Function from m(R)=21 to 26
- Physical Properties of Kuiper Belt and Centaur Objects: Constraints from Spitzer Space Telescope
- De-biased Populations of Kuiper Belt Objects from the Deep Ecliptic Survey
- Record-breaking Storm Activity on Uranus in 2014
- The Neptune Trojans - a new source for the Centaurs?
- Uranus's anomalously low excess heat constrains strongly interacting dark matter
- Planet-bound dark matter and the internal heat of Uranus, Neptune, and hot-Jupiter exoplanets
- Large retrograde Centaurs: visitors from the Oort cloud?
- 2006 SQ372: A Likely Long-Period Comet from the Inner Oort Cloud