EPSC Abstracts
Vol. 19, EPSC2026-364, 2026, updated on 02 Jul 2026
https://doi.org/10.5194/epsc2026-364
Europlanet Science Congress 2026
© Author(s) 2026. This work is distributed under
the Creative Commons Attribution 4.0 License.
Oral | Thursday, 10 Sep, 14:12–14:24 (CEST)| Room Saturn (Jazz 3)
Rapid Formation of Gas-giant Planets via Collisional Coagulation from Dust Grains to Planetary Cores
Hiroshi Kobayashi1 and Hidekazu Tanaka2
Hiroshi Kobayashi and Hidekazu Tanaka
  • 1Nagoya University, Graduate School of Science, Division of Particle and Astronomical Science, Nagoya, Japan (hkobayas@nagoya-u.jp)
  • 2Tohoku University

Gas-giant planets, such as Jupiter, Saturn, and massive exoplanets, were formed via the gas accretion onto the solid cores, each with a mass of roughly 10 Earth masses. However, rapid radial migration due to disk–planet interaction prevents the formation of such massive cores via planetesimal accretion. Comparably rapid core growth via pebble accretion requires very massive protoplanetary disks because most pebbles fall into the central star. Although planetesimal formation, planetary migration, and gas-giant core formation have been studied with a lot of effort, the full evolution path from dust to planets is still uncertain.  We report the result of full simulations for collisional evolution from dust to planets in a whole disk. Dust growth allows the formation of icy planetesimals in the inner disk (< 5-10 au), while pebbles formed in the outer disk drift to the inner disk and there grow to planetesimals. The growth of those pebbles to planetesimals suppresses their radial drift and supplies small planetesimals sustainably in the vicinity of cores. This enables rapid formation of sufficiently massive planetary cores within 0.2–0.4 million years, prior to the planetary migration. Our models shows the first gas giants form at 2–7 au in rather common protoplanetary disks, in agreement with the exoplanet and solar systems (Kobayashi and Tanaka 2021, 2023). 

How to cite: Kobayashi, H. and Tanaka, H.: Rapid Formation of Gas-giant Planets via Collisional Coagulation from Dust Grains to Planetary Cores, Europlanet Science Congress 2026, The Hague, The Netherlands, 7–11 Sep 2026, EPSC2026-364, https://doi.org/10.5194/epsc2026-364, 2026.