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Formation of Hot Planets by a combination of planet scattering, tidal circularization, and Kozai mechanism

2 Pith papers cite this work. Polarity classification is still indexing.

2 Pith papers citing it
abstract

We have investigated the formation of close-in extrasolar giant planets through a coupling effect of mutual scattering, Kozai mechanism, and tidal circularization, by orbital integrations. We have carried out orbital integrations of three planets with Jupiter-mass, directly including the effect of tidal circularization. We have found that in about 30% runs close-in planets are formed, which is much higher than suggested by previous studies. We have found that Kozai mechanism by outer planets is responsible for the formation of close-in planets. During the three-planet orbital crossing, the Kozai excitation is repeated and the eccentricity is often increased secularly to values close enough to unity for tidal circularization to transform the inner planet to a close-in planet. Since a moderate eccentricity can remain for the close-in planet, this mechanism may account for the observed close-in planets with moderate eccentricities and without nearby secondary planets. Since these planets also remain a broad range of orbital inclinations (even retrograde ones), the contribution of this process would be clarified by more observations of Rossiter-McLaughlin effects for transiting planets.

fields

astro-ph.EP 2

years

2026 2

verdicts

UNVERDICTED 2

representative citing papers

Ultra-Precise Astrometric Search for Exoplanets with SKA-VLBI

astro-ph.EP · 2026-06-23 · unverdicted · novelty 4.0

SKA-VLBI is projected to deliver an order-of-magnitude gain in astrometric precision, enabling detection of thousands of exoplanets around ultra-cool dwarfs, M dwarfs and young stars plus dynamical masses when companions are also imaged.

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Showing 2 of 2 citing papers.

  • Ultra-Precise Astrometric Search for Exoplanets with SKA-VLBI astro-ph.EP · 2026-06-23 · unverdicted · none · ref 48 · internal anchor

    SKA-VLBI is projected to deliver an order-of-magnitude gain in astrometric precision, enabling detection of thousands of exoplanets around ultra-cool dwarfs, M dwarfs and young stars plus dynamical masses when companions are also imaged.

  • TOI-7154b: A Close-in Massive Brown Dwarf in an Eccentric Orbit astro-ph.EP · 2026-05-22 · unverdicted · none · ref 171 · internal anchor

    TOI-7154b is a 71.7 M_J brown dwarf in an 8.86-day eccentric orbit around a G star, with eccentricity and age suggesting stellar-like fragmentation origins.