Asteroids and life: How special is the solar system?
arXiv:2202.01352 · doi:10.3847/2041-8213/ac511c
Abstract
Asteroid impacts with the Earth may have played an essential role in the emergence of life on Earth through their creation of favorable niches for life, changes to the atmosphere and delivery of water. Consequently, we suggest two potential requirements for life in an exoplanetary system: first, that the system has an asteroid belt, and second, that there is a mechanism to drive asteroids to impact the terrestrial habitable planet. Since in the solar system, the secular resonance has been shown to have been important in driving these impacts, we explore how the masses and locations of two giant planets determine the location and strength of this secular resonance. Examining observed exoplanetary systems with two giant planets, we find that a secular resonance within the asteroid belt region may not be uncommon. Hence the solar system is somewhat special, but the degree of fine-tuning that may be necessary for the emergence of life is not excessive. Finally, with -body simulations, we show that when the two giant planets are close to the 2:1 mean motion resonance, the asteroid belt is unstable but this does not lead to increased asteroid delivery.
Accepted for publication in ApJL
References in corpus (21)
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- Solar System evolution from compositional mapping of the asteroid belt
- Planet formation around stars of various masses: The snow line and the frequency of giant planets
- The Gemini Planet Imager Exoplanet Survey: Giant Planet and Brown Dwarf Demographics From 10-100 AU
- Transience of hot dust around sun-like stars
- Origin of water in the inner Solar System: Planetesimals scattered inward during Jupiter and Saturn's rapid gas accretion
- Hints for a Turnover at the Snow Line in the Giant Planet Occurrence Rate
- Analytical protostellar disk models 1: the effect of internal dissipation and surface irradiation on the structure of disks and the location of the snow line around Sun-like stars
- Shadows cast by a warp in the HD 142527 protoplanetary disk
- On the Location of the Snow Line in a Protoplanetary Disk
- Contemporary formation of early solar system planetesimals at two distinct radial locations
- Do Two Temperature Debris Disks Have Multiple Belts?
- The terrestrial late veneer from core disruption of a lunar-sized impactor
- The Role of Early Giant Planet Instability in the Terrestrial Planet Formation
- The Asteroid Belt as a Relic From a Chaotic Early Solar System
- Does warm debris dust stem from asteroid belts?
- A record of the final phase of giant planet migration fossilized in the asteroid belt's orbital structure
- Dynamical transport of asteroid fragments from the nu6 resonance
- What Sets the Radial Locations of Warm Debris Disks?
- Asteroid impacts on terrestrial planets: The effects of super-Earths and the role of the resonance
- How much water was delivered from the asteroid belt to the Earth after its formation?