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Kepler-78 and the Ultra-Short-Period Planets

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arxiv 1803.03303 v4 pith:NN4DJRMJ submitted 2018-03-08 astro-ph.EP

classification astro-ph.EP
keywords theyplanetskepler-78boplusbeenperiodsizeultra-short-period
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abstract

Compared to the Earth, the exoplanet Kepler-78b has a similar size (1.2 $R_\oplus$) and an orbital period a thousand times shorter (8.5 hours). It is currently the smallest planet for which the mass, radius, and dayside brightness have all been measured. Kepler-78b is an exemplar of the ultra-short-period (USP) planets, a category defined by the simple criterion $P_{\rm orb} < 1$ day. We describe our Fourier-based search of the Kepler data that led to the discovery of Kepler-78b, and review what has since been learned about the population of USP planets. They are about as common as hot Jupiters, and they are almost always smaller than 2 $R_\oplus$. They are often members of compact multi-planet systems, although they tend to have relatively large period ratios and mutual inclinations. They might be the exposed rocky cores of "gas dwarfs," the planets between 2-4 $R_\oplus$ in size that are commonly found in somewhat wider orbits.

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Forward citations

Cited by 2 Pith papers

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

  1. Companion Architectures of Sub-Saturns: Distinct Migration Pathways Across the Neptunian Landscape

    astro-ph.EP 2026-07 accept novelty 6.0 of 10

    Desert/ridge sub-Saturns show ~10% nearby-companion rates like hot Jupiters; savanna ones show ~70% like warm Jupiters, supporting HEM versus quiescent migration.

  2. Refined parameters, formation, and dynamical stability of the wild exoplanet system K2-312=HD 80653

    astro-ph.EP 2026-07 conditional novelty 5.0 of 10

    HD 80653c is confirmed as a highly eccentric cold Jupiter (P=871.3 d, e=0.8435, M sin i=5.3 MJup) whose orbit and survival of the inner super-Earth are consistent with planet-planet scattering.

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