4.6 Article

Ultra-short-period Planets Are Stable against Tidal Inspiral

期刊

ASTRONOMICAL JOURNAL
卷 160, 期 3, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.3847/1538-3881/aba74f

关键词

Exoplanet dynamics; Exoplanet evolution; Exoplanet tides; Stellar ages; Tidal interaction; Exoplanets

资金

  1. National Science Foundation [2009415]
  2. NASA Science Mission directorate
  3. Division Of Astronomical Sciences
  4. Direct For Mathematical & Physical Scien [2009415] Funding Source: National Science Foundation

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It has been unambiguously shown both in individual systems and at the population level that hot Jupiters experience tidal inspiral before the end of their host stars' main-sequence lifetimes. Ultra-short-period (USP) planets have orbital periods P < 1 day, rocky compositions, and are expected to experience tidal decay on similar timescales to hot Jupiters if the efficiency of tidal dissipation inside their host stars parameterized as Q(*)' is independent of P and/or secondary mass M-p. Any difference between the two classes of systems would reveal that a model with constant Q(*)' is insufficient. If USP planets experience tidal inspiral, then USP planet systems will be relatively young compared to similar stars without USP planets. Because it is a proxy for relative age, we calculate the Galactic velocity dispersions of USP planet candidate host and non-host stars using data from Gaia Data Release 2 supplemented with ground-based radial velocities. We find that main-sequence USP planet candidate host stars have kinematics consistent with similar stars in the Kepler field without observed USP planets. This indicates that USP planet hosts have similar ages to field stars and that USP planets do not experience tidal inspiral during the main-sequence lifetimes of their host stars. The survival of USP planets requires that Q(*)' greater than or similar to 10(7) at P approximate to 0.7 day and M-p approximate to 2.6 M-circle dot. This result demands that Q(*)' depend on the orbital period and/or mass of the secondary in the range 0.5 day less than or similar to P less than or similar to 5 days and 1 M-circle plus less than or similar to M-p less than or similar to 1000 M-circle plus.

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