SIMBAD references

2015MNRAS.447.1049V - Mon. Not. R. Astron. Soc., 447, 1049-1058 (2015/February-3)

Detectable close-in planets around white dwarfs through late unpacking.

VERAS D. and GANSICKE B.T.

Abstract (from CDS):

Although 25-50 percent of white dwarfs (WDs) display evidence for remnant planetary systems, their orbital architectures and overall sizes remain unknown. Vibrant close-in ( ≃ 1R) circumstellar activity is detected at WDs spanning many Gyr in age, suggestive of planets further away. Here we demonstrate how systems with 4 and 10 closely packed planets that remain stable and ordered on the main sequence can become unpacked when the star evolves into a WD and experience pervasive inward planetary incursions throughout WD cooling. Our full-lifetime simulations run for the age of the Universe and adopt main-sequence stellar masses of 1.5, 2.0 and 2.5M, which correspond to the mass range occupied by the progenitors of typical present-day WDs. These results provide (i) a natural way to generate an ever-changing dynamical architecture in post-main-sequence planetary systems, (ii) an avenue for planets to achieve temporary close-in orbits that are potentially detectable by transit photometry and (iii) a dynamical explanation for how residual asteroids might pollute particularly old WDs.

Abstract Copyright: © 2014 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society (2014)

Journal keyword(s): methods: numerical - celestial mechanics - minor planets, asteroids: general - planets and satellites: dynamical evolution and stability - protoplanetary discs - white dwarfs

Simbad objects: 3

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