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Main Authors: Ma, Xiaoyi, Yu, Fangyuan, Dong, Ruobing, Doi, Kiyoaki, Kataoka, Akimasa, Liu, Hauyu Baobab, Long, Feng, Ueda, Takahiro, Li, Huojun, van der Marel, Nienke, Kospal, Agnes
Format: Preprint
Published: 2026
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Online Access:https://arxiv.org/abs/2603.06992
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author Ma, Xiaoyi
Yu, Fangyuan
Dong, Ruobing
Doi, Kiyoaki
Kataoka, Akimasa
Liu, Hauyu Baobab
Long, Feng
Ueda, Takahiro
Li, Huojun
van der Marel, Nienke
Kospal, Agnes
author_facet Ma, Xiaoyi
Yu, Fangyuan
Dong, Ruobing
Doi, Kiyoaki
Kataoka, Akimasa
Liu, Hauyu Baobab
Long, Feng
Ueda, Takahiro
Li, Huojun
van der Marel, Nienke
Kospal, Agnes
contents Azimuthal arcs in millimeter continuum emission from protoplanetary disks are often attributed to dust-trapping vortices, but definitive observational confirmation of vortices remains lacking. We present sub-0.1" resolution ALMA continuum observations of the HD 34282 disk at 0.9, 1.3, 2.1, and 3.1 mm. These observations resolve a bright azimuthal arc superposed on a compact double-gap, triple-ring morphology, most clearly at shorter wavelengths, and enable us to probe the physical origin of the arc. It exhibits a lower spectral index than the surrounding rings, consistent with enhanced grain growth and/or higher dust surface density of a dust-trapping vortex. Its azimuthal width decreases with increasing wavelength, consistent with tighter confinement of larger grains, or lower optical depths at longer wavelengths. These observations probe dust with Stokes numbers St < 0.03. Vortex models predict negligible peak shifts in this regime, consistent with the 1.3 to 3.1 mm data. At 0.9 mm, however, the arc peak is offset by 15 +/- 4 degree in the direction of disk rotation relative to longer wavelengths, and the near-side ring emission is locally dimmer compared to the far-side, likely reflecting optical-depth or temperature effects. These observations are consistent with azimuthal dust trapping, potentially associated with a vortex-induced pressure maximum.
format Preprint
id arxiv_https___arxiv_org_abs_2603_06992
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Multi-wavelength ALMA Imaging of HD 34282: Dust-trapping Signatures of a Vortex Candidate
Ma, Xiaoyi
Yu, Fangyuan
Dong, Ruobing
Doi, Kiyoaki
Kataoka, Akimasa
Liu, Hauyu Baobab
Long, Feng
Ueda, Takahiro
Li, Huojun
van der Marel, Nienke
Kospal, Agnes
Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
Azimuthal arcs in millimeter continuum emission from protoplanetary disks are often attributed to dust-trapping vortices, but definitive observational confirmation of vortices remains lacking. We present sub-0.1" resolution ALMA continuum observations of the HD 34282 disk at 0.9, 1.3, 2.1, and 3.1 mm. These observations resolve a bright azimuthal arc superposed on a compact double-gap, triple-ring morphology, most clearly at shorter wavelengths, and enable us to probe the physical origin of the arc. It exhibits a lower spectral index than the surrounding rings, consistent with enhanced grain growth and/or higher dust surface density of a dust-trapping vortex. Its azimuthal width decreases with increasing wavelength, consistent with tighter confinement of larger grains, or lower optical depths at longer wavelengths. These observations probe dust with Stokes numbers St < 0.03. Vortex models predict negligible peak shifts in this regime, consistent with the 1.3 to 3.1 mm data. At 0.9 mm, however, the arc peak is offset by 15 +/- 4 degree in the direction of disk rotation relative to longer wavelengths, and the near-side ring emission is locally dimmer compared to the far-side, likely reflecting optical-depth or temperature effects. These observations are consistent with azimuthal dust trapping, potentially associated with a vortex-induced pressure maximum.
title Multi-wavelength ALMA Imaging of HD 34282: Dust-trapping Signatures of a Vortex Candidate
topic Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2603.06992