Unstable periodic orbits and dynamical stability maps can predict long-term instability and white dwarf pollution in one-planet plus one-asteroid systems, and match 10 Gyr N-body simulations.
Detecting circumbinary exoplanets and hierarchical stellar triples with the LISA gravitational radiation mission
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abstract
We investigate the possibility of detecting planetary or stellar companions orbiting white dwarf binaries using the LISA gravitational radiation detector. Specifically, we consider the acceleration of the barycenter of the white dwarf binary due to the orbiting third body as well as the effect of changes in the tidal field across the binary due to the perturber's eccentric orbit. We find that the movement of the barycenter is detectable for both stellar and planetary mass objects. If circumbinary planets occur with frequencies similar to gas giant planets around isolated main sequence stars, then we expect to find of order 10 such planets in four years of LISA observations. For a longer, ten-year mission the accessible parameter space for planetary mass, orbital period, and binary orbital period grows and LISA's associated yield increases to ~100 expected detections.
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Driving white dwarf metal pollution through unstable eccentric periodic orbits
Unstable periodic orbits and dynamical stability maps can predict long-term instability and white dwarf pollution in one-planet plus one-asteroid systems, and match 10 Gyr N-body simulations.