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A classification system is presented for characterizing the composition of planetary bodies. Mass-radius and mass-density relationships indicate planets may be broadly grouped into Gas Giant, Rock-Ice Giant, and Terrestrial composition classes based upon the mass fraction of H-He gas. For each of these broad composition classes, specific bulk composition classes are defined and characterized with composition codes that describe the rock, ice, and gas fractions. The classification system allows for both general and detailed characterization of exoplanets based upon planetary mass-radius-composition models. The composition codes provided for each bulk composition class may be utilized in exoplanet databases to simplify searches. Finally, the bulk composition classes combined with planetary mass ranges allow for alignment of Solar System analog names to more accurately characterize individual exoplanets.
The aim of the chapter is to summarize our understanding of the compositional distribution across the different reservoirs of small bodies (main belt asteroids, giant planet trojans, irregular satellites of the giant planets, TNOs, comets). We then u
The bright star $pi$ Men was chosen as the first target for a radial velocity follow-up to test the performance of ESPRESSO, the new high-resolution spectrograph at the ESOs Very-Large Telescope (VLT). The star hosts a multi-planet system (a transiti
There is a vibrant and effective planetary science community in Canada. We do research in the areas of meteoritics, asteroid and trans-Neptunian object orbits and compositions, and space weather, and are involved in space probe missions to study plan
TRAPPIST-1 is a fantastic nearby (~39.14 light years) planetary system made of at least seven transiting terrestrial-size, terrestrial-mass planets all receiving a moderate amount of irradiation. To date, this is the most observationally favourable s
We assess broadband color filters for the two fast cameras on the PLAnetary Transits and Oscillations (PLATO) of stars space mission with respect to exoplanetary atmospheric characterization. We focus on Ultra Hot Jupiters and Hot Jupiters placed 25p