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Effects of Grain Alignment with Magnetic Fields on Grain Growth and the Structure of Dust Aggregates
DOI: 10.3847/1538-4357/ac5408 Bibcode: 2022ApJ...928..102H

Hoang, Thiem

Dust grains drift through the interstellar medium and are aligned with the magnetic field. Here we study the effect of grain alignment and motion on grain growth in molecular clouds (MCs). We first discuss the characteristic timescales of alignment of the grain axis of maximum inertia ( $\hat{{\boldsymbol{a}}}$ 1) with its angular momen…

2022 The Astrophysical Journal
Rosetta 26
The Molecular Composition of Shadowed Proto-solar Disk Midplanes Beyond the Water Snowline
DOI: 10.3847/1538-4357/ac87fa Bibcode: 2022ApJ...936..188N

Walsh, Catherine; Nomura, Hideko; Ohno, Kazumasa +3 more

The disk midplane temperature is potentially affected by the dust traps/rings. The dust depletion beyond the water snowline will cast a shadow. In this study, we adopt a detailed gas-grain chemical reaction network, and investigate the radial gas and ice abundance distributions of dominant carbon-, oxygen-, and nitrogen-bearing molecules in disks …

2022 The Astrophysical Journal
Rosetta 12
Adsorption-driven Gas Trapping in Cometary Ice Analogs
DOI: 10.3847/1538-4357/ac9621 Bibcode: 2022ApJ...940..153Y

Yokochi, Reika

Icy planetary bodies carry volatiles in abundances that should reflect the conditions of their formation. However, the interpretation of volatile abundance data from comets is complicated by the fact that the governing parameters and underlying mechanism of volatile trapping are poorly constrained. To unravel the mechanism of gas trapping in water…

2022 The Astrophysical Journal
Rosetta 1