Multi-band ALMA Polarization Observations of BHB07-11 Reveal Aligned Dust Grains in Complex Spiral Arm Structures

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Main Authors: Fourkas, Austen, Looney, Leslie W., Lin, Zhe-Yu Daniel, Radecki, Martin, Li, Zhi-Yun, Tobin, John J., Stephens, Ian W., Fernández-López, Manuel, Yang, Haifeng, Kwon, Woojin, Harrison, Rachel
Format: Preprint
Published: 2025
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author Fourkas, Austen
Looney, Leslie W.
Lin, Zhe-Yu Daniel
Radecki, Martin
Li, Zhi-Yun
Tobin, John J.
Stephens, Ian W.
Fernández-López, Manuel
Yang, Haifeng
Kwon, Woojin
Harrison, Rachel
author_facet Fourkas, Austen
Looney, Leslie W.
Lin, Zhe-Yu Daniel
Radecki, Martin
Li, Zhi-Yun
Tobin, John J.
Stephens, Ian W.
Fernández-López, Manuel
Yang, Haifeng
Kwon, Woojin
Harrison, Rachel
contents Polarization-mode observations from the Atacama Large Millimeter/submillimeter Array (ALMA) are powerful tools for studying the dust grain populations in circumstellar disks. Many sources exhibit polarization signatures consistent with aligned dust grains, yet the physical origin of this alignment remains uncertain. One such source is BHB07-11, a Class I protobinary object in the Pipe Nebula with complex spiral arm structures in its circumbinary disk. While magnetic fields are often invoked to explain grain alignment in the interstellar medium, the contrasting conditions in circumstellar disk environments demand further investigation into grain alignment mechanisms. To determine BHB07-11's dominant polarization mechanism, we leverage ALMA polarization-mode dust continuum observations in Bands 3 ($λ$=3.1 mm), 6 ($λ$=1.3 mm), and 7 ($λ$=0.87 mm), in combination with high-resolution dust continuum and spectral line observations in Band 6. Observed polarization vectors in each band are consistent with emission from aligned grains and follow the structure of the spiral arms as shown in the high-resolution observations. Given the relationship between the observed polarization vector orientation and the spiral arms, we find that the polarization morphology is most consistent with grains aligned through a relative velocity flow between gas and dust in the spiral arms, as envisioned in the recently developed badminton birdie-like alignment mechanism, rather than alignment with a magnetic field or other known alignment mechanisms.
format Preprint
id arxiv_https___arxiv_org_abs_2512_05768
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Multi-band ALMA Polarization Observations of BHB07-11 Reveal Aligned Dust Grains in Complex Spiral Arm Structures
Fourkas, Austen
Looney, Leslie W.
Lin, Zhe-Yu Daniel
Radecki, Martin
Li, Zhi-Yun
Tobin, John J.
Stephens, Ian W.
Fernández-López, Manuel
Yang, Haifeng
Kwon, Woojin
Harrison, Rachel
Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
Astrophysics of Galaxies
Polarization-mode observations from the Atacama Large Millimeter/submillimeter Array (ALMA) are powerful tools for studying the dust grain populations in circumstellar disks. Many sources exhibit polarization signatures consistent with aligned dust grains, yet the physical origin of this alignment remains uncertain. One such source is BHB07-11, a Class I protobinary object in the Pipe Nebula with complex spiral arm structures in its circumbinary disk. While magnetic fields are often invoked to explain grain alignment in the interstellar medium, the contrasting conditions in circumstellar disk environments demand further investigation into grain alignment mechanisms. To determine BHB07-11's dominant polarization mechanism, we leverage ALMA polarization-mode dust continuum observations in Bands 3 ($λ$=3.1 mm), 6 ($λ$=1.3 mm), and 7 ($λ$=0.87 mm), in combination with high-resolution dust continuum and spectral line observations in Band 6. Observed polarization vectors in each band are consistent with emission from aligned grains and follow the structure of the spiral arms as shown in the high-resolution observations. Given the relationship between the observed polarization vector orientation and the spiral arms, we find that the polarization morphology is most consistent with grains aligned through a relative velocity flow between gas and dust in the spiral arms, as envisioned in the recently developed badminton birdie-like alignment mechanism, rather than alignment with a magnetic field or other known alignment mechanisms.
title Multi-band ALMA Polarization Observations of BHB07-11 Reveal Aligned Dust Grains in Complex Spiral Arm Structures
topic Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2512.05768