Published May 11, 2022 | Version v1

Eccentric Giant Planets: Observational Signatures of Atmospheric Variability

  • 1. Johns Hopkins University Applied Physics Laboratory
  • 2. Department of Planetary Sciences, Lunar and Planetary Laboratory, University of Arizona
  • 3. Northern Arizona University

Description

The time-variable radiation deposited in the atmosphere of an eccentric planet induces variations in the thermal and chemical structure that may be detectable with current and future missions. Using EGP+ (Mayorga et al. 2021), we explore a grid of cloudless eccentric planet model atmospheres to ascertain the dominant variables that control atmospheric response to periastron passage in a variety of cases and predict observable features indicative of their response. We explore a range of parameters including orbital period, eccentricity, stellar effective temperature, and planet gravity in an attempt to determine a diagnostic measure of the observability of spectral changes. We present preliminary results from a grid of 48 models around Sun-like stars.

Files

ExoplanetsIVPoster.pdf

Files (7.7 MB)

Name Size Download all
md5:755df6d4934d0b0c10dc1b34398113ef
7.7 MB Preview Download