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A-type Stars, the Destroyers of Worlds: The lives and deaths of Jupiters in evolving stellar binaries

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arxiv 1806.04145 v3 pith:A334R53V submitted 2018-06-11 astro-ph.SR astro-ph.EP

A-type Stars, the Destroyers of Worlds: The lives and deaths of Jupiters in evolving stellar binaries

classification astro-ph.SR astro-ph.EP
keywords starssequencea-typeevolutionmainplanetsstellarduring
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Hot Jupiters (HJs), gas giant planets orbiting their host stars with periods on the order of days, commonly occur in the Galaxy, including relatively massive ($1.6-2.4$ $M_\odot$, i.e., A-type main sequence stars) and evolved stars. The majority of A-type main sequence stars have stellar binary companions, which can strongly affect the dynamical evolution of planets around either star. In this work, we investigate the effects of gravitational perturbations by a far away stellar companion on the orbital evolution of gas giant planets orbiting A-type stars, the so-called Eccentric Kozai-Lidov (EKL) mechanism, including the effects of general relativity, post-main sequence stellar evolution, and tides. We find that only $0.15~\%$ of A-type stars will host HJs during their main sequence lifetime. However, we also find a new class of planets, Temporary Hot Jupiters (THJs), that form during the post-main sequence lifetime of about $3.7~\%$ of former A-type main sequence stars. These THJs orbit on periods of tens to a hundred days and only exist for a few $100{,}000$ years before they are engulfed, but they reach similar temperatures as `classical' HJs due to the increased stellar luminosities. THJs' spin-orbit angles will mostly be misaligned. THJ effects on the host stars' evolution could also be observable for longer than a few $100{,}000$ years. Overall, we find that approximately $70~\%$ of all gas giant planets orbiting A-type stars will eventually be destroyed or engulfed by their star, about $25~\%$ during the main sequence lifetime, about $45~\%$ during post-main sequence evolution.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Discovery of an Inflated Hot Neptune and Its Formation from Jovian Mass Loss

    astro-ph.EP 2026-07 unverdicted novelty 7.0

    TOI-2195 A b is an inflated hot Neptune that likely originated as a Jovian planet losing ~90% mass through Roche lobe overflow during EKL-driven high-eccentricity migration triggered by a wide binary companion.

  2. 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.