English

Four Sub-Saturns with Dissimilar Densities: Windows into Planetary Cores and Envelopes

Earth and Planetary Astrophysics 2017-03-15 v1

Abstract

We present results from a Keck/HIRES radial velocity campaign to study four sub-Saturn-sized planets, K2-27b, K2-32b, K2-39b, and K2-108b, with the goal of understanding their masses, orbits, and heavy element enrichment. The planets have similar sizes (RP=4.55.5 RE)(R_P = 4.5-5.5~R_E), but have dissimilar masses (MP=1660 ME)(M_P = 16-60~M_E), implying a diversity in their core and envelope masses. K2-32b is the least massive (MP=16.5±2.7 ME)(M_P = 16.5 \pm 2.7~M_E) and orbits in close proximity to two sub-Neptunes near a 3:2:1 period commensurability. K2-27b and K2-39b are significantly more massive at MP=30.9±4.6 MEM_P = 30.9 \pm 4.6~M_E and MP=39.8±4.4 MEM_P = 39.8 \pm 4.4~M_E, respectively, and show no signs of additional planets. K2-108b is the most massive at MP=59.4±4.4 MEM_P = 59.4 \pm 4.4~M_E, implying a large reservoir of heavy elements of about 50 ME\approx50~M_E. Sub-Saturns as a population have a large diversity in planet mass at a given size. They exhibit remarkably little correlation between mass and size; sub-Saturns range from 660 ME\approx 6-60~M_E, regardless of size. We find a strong correlation between planet mass and host star metallicity, suggesting that metal-rich disks form more massive planet cores. The most massive sub-Saturns tend to lack detected companions and have moderately eccentric orbits, perhaps as a result of a previous epoch of dynamical instability. Finally, we observe only a weak correlation between the planet envelope fraction and present-day equilibrium temperature, suggesting that photo-evaporation does not play a dominant role in determining the amount of gas sub-Saturns accrete from their protoplanetary disks.

Keywords

Cite

@article{arxiv.1702.00013,
  title  = {Four Sub-Saturns with Dissimilar Densities: Windows into Planetary Cores and Envelopes},
  author = {Erik A. Petigura and Evan Sinukoff and Eric Lopez and Ian J. M. Crossfield and Andrew W. Howard and John M. Brewer and Benjamin J. Fulton and Howard T. Isaacson and David R. Ciardi and Steve B. Howell and Mark E. Everett and Elliott P. Horch and Lea Hirsch and Lauren M. Weiss and Joshua E. Schlieder},
  journal= {arXiv preprint arXiv:1702.00013},
  year   = {2017}
}

Comments

25 pages, 15 figures, accepted for publication in AJ