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2017ApJ...839L..21K - Astrophys. J., 839, L21-L21 (2017/April-3)

Fast litho-panspermia in the habitable zone of the TRAPPIST-1 system.

KRIJT S., BOWLING T.J., LYONS R.J. and CIESLA F.J.

Abstract (from CDS):

With several short-period, Earth-mass planets in the habitable zone (HZ), the TRAPPIST-1 system potentially allows litho-panspermia to take place on very short timescales. We investigate the efficiency and speed of inter-planetary material transfer resulting from impacts onto the HZ planets. By simulating trajectories of impact ejecta from their moment of ejection until (re-)accretion, we find that transport between the HZ planets is fastest for ejection velocities around and just above planetary escape velocity. At these ejection velocities, ∼10% of the ejected material reaches another HZ planet within 102 years, indicating litho-panspermia can be 4-5 orders of magnitude faster in TRAPPIST-1 than in the solar system.

Abstract Copyright: © 2017. The American Astronomical Society. All rights reserved.

Journal keyword(s): astrobiology - meteorites, meteors, meteoroids - methods: numerical - methods: numerical

Simbad objects: 8

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