arXiv · 2303.10450
Igneous Rim Accretion on Chondrules in Low-Velocity Shock Waves
Abstract
Shock wave heating is a leading candidate for the mechanisms of chondrule formation. This mechanism forms chondrules when the shock velocity is in a certain range. If the shock velocity is lower than this range, dust particles smaller than chondrule precursors melt, while chondrule precursors do not. We focus on the low-velocity shock waves as the igneous rim accretion events. Using a semi-analytical treatment of the shock-wave heating model, we found that the accretion of molten dust particles occurs when they are supercooling. The accreted igneous rims have two layers, which are the layers of the accreted supercooled droplets and crystallized dust particles. We suggest that chondrules experience multiple rim-forming shock events.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Yuji Matsumoto, Sota Arakawa. 2023-03-18. Igneous Rim Accretion on Chondrules in Low-Velocity Shock Waves. https://doi.org/10.3847/1538-4357%2Facc57c
Cite the original work for its findings. Save a collection to share your selection of sources.