A closer look at individual collisions of dust aggregates: Material mixing and exchange on microscopic scales

Fuente: arXiv
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Main Authors: Krijt, Sebastiaan, Arakawa, Sota, Oosterloo, Mark, Tanaka, Hidekazu
Format: Preprint
Published: 2024
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author Krijt, Sebastiaan
Arakawa, Sota
Oosterloo, Mark
Tanaka, Hidekazu
author_facet Krijt, Sebastiaan
Arakawa, Sota
Oosterloo, Mark
Tanaka, Hidekazu
contents Collisions between aggregates with different histories and compositions are expected to be commonplace in dynamically active protoplanetary discs. Nonetheless, relatively little is known about how collisions themselves may contribute to the resulting mixing of material. Here we use state-of-the-art granular dynamics simulations to investigate mixing between target/projectile material in a variety of individual aggregate-aggregate collisions, and use the results to discuss the efficiency of collisional mixing in protoplanetary environments. We consider sticking collisions (up to 10-20 m/s for our set-up) and disruptive collisions (40 m/s) of BPCA and BCCA clusters, and quantify mixing in the resulting fragments on both individual fragment and sub-aggregate levels. We find that the mass fraction of material that can be considered to be `well-mixed' (i.e., locally made up of a mix of target and projectile material) to be limited, typically between 3-6% for compact BPCA precursors, and increasing to 20-30% for more porous BCCA clusters. The larger fragments produced in disruptive collisions are equally heterogeneous, suggesting aggregate-aggregate collisions are a relatively inefficient way of mixing material with different origins on small scales.
format Preprint
id arxiv_https___arxiv_org_abs_2409_17654
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A closer look at individual collisions of dust aggregates: Material mixing and exchange on microscopic scales
Krijt, Sebastiaan
Arakawa, Sota
Oosterloo, Mark
Tanaka, Hidekazu
Earth and Planetary Astrophysics
Collisions between aggregates with different histories and compositions are expected to be commonplace in dynamically active protoplanetary discs. Nonetheless, relatively little is known about how collisions themselves may contribute to the resulting mixing of material. Here we use state-of-the-art granular dynamics simulations to investigate mixing between target/projectile material in a variety of individual aggregate-aggregate collisions, and use the results to discuss the efficiency of collisional mixing in protoplanetary environments. We consider sticking collisions (up to 10-20 m/s for our set-up) and disruptive collisions (40 m/s) of BPCA and BCCA clusters, and quantify mixing in the resulting fragments on both individual fragment and sub-aggregate levels. We find that the mass fraction of material that can be considered to be `well-mixed' (i.e., locally made up of a mix of target and projectile material) to be limited, typically between 3-6% for compact BPCA precursors, and increasing to 20-30% for more porous BCCA clusters. The larger fragments produced in disruptive collisions are equally heterogeneous, suggesting aggregate-aggregate collisions are a relatively inefficient way of mixing material with different origins on small scales.
title A closer look at individual collisions of dust aggregates: Material mixing and exchange on microscopic scales
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2409.17654