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Wide Binary Orbits are Preferentially Aligned with the Orbits of Small Planets, but Probably Not Hot Jupiters

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arxiv 2405.10379 v1 pith:2B4SSJ5J submitted 2024-05-16 astro-ph.EP astro-ph.SR

classification astro-ph.EPastro-ph.SR
keywords alignmentbinaryplanetsorbitsjupiterssemimajorsmallaxes
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abstract

Studying the relative orientations of the orbits of exoplanets and wide-orbiting binary companions (semimajor axis greater than 100 AU) can shed light on how planets form and evolve in binary systems. Previous observations by multiple groups discovered a possible alignment between the orbits of visual binaries and the exoplanets that reside in them. In this study, using data from \textit{Gaia} DR3 and TESS, we confirm the existence of an alignment between the orbits of small planets $(R<6 R_\oplus)$ and binary systems with semimajor axes below 700 AU ($p=10^{-6}$). However, we find no statistical evidence for alignment between planet and binary orbits for binary semimajor axes greater than 700 AU, and no evidence for alignment of large, closely-orbiting planets (mostly hot Jupiters) and binaries at any separation. The lack of orbital alignment between our large planet sample and their binary companions appears significantly different from our small planet sample, even taking into account selection effects. Therefore, we conclude that any alignment between wide-binaries and our sample of large planets (predominantly hot Jupiters) is probably not as strong as what we observe for small planets in binaries with semimajor axes less than 700 AU. The difference in the alignment distribution of hot Jupiters and smaller planets may be attributed to the unique evolutionary mechanisms occuring in systems that form hot Jupiters, including potentially destabilizing secular resonances that onset as the protoplanetary disk dissipates and high-eccentricity migration occurring after the disk is gone.

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Cited by 2 Pith papers

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

  1. A Hot Jupiter with a Retrograde Orbit around a Sun-like Star and a Toy Model of Hot Jupiters in Wide Binary Star Systems

    astro-ph.EP 2025-07 conditional novelty 6.0 of 10

    KELT-23A b orbits its cool, Sun-like host star on a retrograde or near-polar path, making it one of the few cool-star hot Jupiters with a highly misaligned orbit.

  2. Ten Aligned Orbits: Planet Migration in the Era of JWST and Ariel

    astro-ph.EP 2025-05 conditional novelty 6.0 of 10

    Ten new projected spin-orbit angles, all consistent with alignment, plus a true obliquity for a brown dwarf and a completeness study of JWST/Ariel atmospheric targets.

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