Formation of Ryugu's parent planetesimal beyond the CO snow line from small pebbles: insights from thermal evolution modeling
arXiv:2609.20608 · doi:10.1016/j.epsl.2026.119903
Abstract
Astronomical observations of planet-forming circumstellar disks indicate that planetesimals form from 0.1-mm- to 1-cm-sized dust aggregates, commonly called ``pebbles.'' When such pebbles accrete beyond the water snow line, the resulting icy planetesimals undergo water--rock differentiation and develop porous pebble-pile cores whose voids are saturated with liquid water. Circulation of this water enhances heat transport in the core, suppressing the temperature rise caused by the decay of radionuclides. In this study, we constrain the accretion age and constituent pebble size of Ryugu's parent planetesimal by modeling the thermal evolution of icy planetesimals and comparing the results with the precipitation ages and temperatures of aqueously formed minerals identified in samples returned from asteroid Ryugu. Our numerical results suggest that Ryugu's parent planetesimal accreted within 2.0 Myr of the formation of calcium--aluminum-rich inclusions. The inferred early accretion age supports the hypothesis that Ryugu's parent planetesimal formed earlier than most chondrule-bearing carbonaceous chondrite parent planetesimals, potentially explaining the absence of chondrules in Ryugu samples. We also found that the core of the parent planetesimal was composed of pebbles no larger than a few millimeters. Such small pebble sizes are consistent with theoretical predictions for planetesimals formed beyond the CO snow line.
Original pre-peer-review manuscript
References in corpus (10)
- Evidence for the formation of comet 67P/Churyumov-Gerasimenko through gravitational collapse of a bound clump of pebbles
- Dust Density Distribution and Imaging Analysis of Different Ice Lines in Protoplanetary Disks
- Nonsticky Ice at the Origin of the Uniformly Polarized Submillimeter Emission from the HL Tau Disk
- Size Dependence of the Bouncing Barrier in Protoplanetary Dust Growth
- Statistical Chronometry of Meteorites. II. Initial Abundances and Homogeneity of Short-lived Radionuclides
- Distant formation and differentiation of outer main belt asteroids and carbonaceous chondrite parent bodies
- On the stickiness of CO and HO ice particles
- Microporosity and parent body of the rubble-pile NEA (162173) Ryugu
- Survivability of Amorphous Ice in Comets Depends on the Latent Heat of Crystallization of Impure Water Ice
- Growth and thermal evolution of icy planetesimals