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Binary star influence on post-main-sequence multi-planet stability

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arxiv 1610.05307 v1 pith:4HFRONL5 submitted 2016-10-17 astro-ph.EP astro-ph.SR

Binary star influence on post-main-sequence multi-planet stability

classification astro-ph.EP astro-ph.SR
keywords binarydwarfwhitecompanionsdistanceduringhostinstability
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Nearly every star known to host planets will become a white dwarf, and nearly 100 planet-hosts are now known to be accompanied by binary stellar companions. Here, we determine how a binary companion triggers instability in otherwise unconditionally stable single-star two-planet systems during the giant branch and white dwarf phases of the planet host. We perform about 700 full-lifetime (14 Gyr) simulations with A0 and F0 primary stars and secondary K2 companions, and identify the critical binary distance within which instability is triggered at any point during stellar evolution. We estimate this distance to be about seven times the outer planet separation, for circular binaries. Our results help characterize the fates of planetary systems, and in particular which ones might yield architectures that are conducive to generating observable heavy metal pollution in white dwarf atmospheres.

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  1. Dynamical formation of long-period exoplanets systems in evolving binary stars

    astro-ph.EP 2026-07 conditional novelty 4.0

    MESA+REBOUND simulations show that stellar mass loss in a wide binary destabilizes S-type multi-planet systems and pushes surviving giants to long-period orbits.