Submillimeter-wavelength Polarimetry of IRC+10216

Fuente: arXiv
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Main Authors: Andersson, B-G, Karoly, Janik, Bastien, Pierre, Soam, Archana, Coudé, Simon, Tahani, Mehrnoosh, Gordon, Michael S., Fox-Middleton, Sydney
Format: Preprint
Published: 2023
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author Andersson, B-G
Karoly, Janik
Bastien, Pierre
Soam, Archana
Coudé, Simon
Tahani, Mehrnoosh
Gordon, Michael S.
Fox-Middleton, Sydney
author_facet Andersson, B-G
Karoly, Janik
Bastien, Pierre
Soam, Archana
Coudé, Simon
Tahani, Mehrnoosh
Gordon, Michael S.
Fox-Middleton, Sydney
contents We present SCUBA-2/POL-2 850 $μ$m polarimetric observations of the circumstellar envelope (CSE) of the carbon-rich asymptotic giant branch (AGB) star IRC+10216. Both FIR and optical polarization data indicate grains aligned with their long axis in the radial direction relative to the central star. The 850 $μ$m polarization does not show this simple structure. The 850 $μ$m data are indicative, albeit not conclusive, of a magnetic dipole geometry. Assuming such a simple dipole geometry, the resulting 850 $μ$m polarization geometry is consistent with both Zeeman observations and small-scale structure in the CSE. While there is significant spectral line polarization contained within the SCUBA-2 850 $μ$m pass-band for the source, it is unlikely that our broadband polarization results are dominated by line polarization. To explain the required grain alignment, grain mineralogy effects, due to either fossil silicate grains from the earlier oxygen-rich AGB phase of the star, or due to the incorporation of ferromagnetic inclusions in the largest grains, may play a role. We argue that the most likely explanation is due to a new alignment mechanism \citep{arXiv:2009.11304} wherein a charged grain, moving relative to the magnetic field, precesses around the induced electric field and therefore aligns with the magnetic field. This mechanism is particularly attractive as the optical, FIR, and sub-mm wave polarization of the carbon dust can then be explained in a consistent way, differing simply due to the charge state of the grains.
format Preprint
id arxiv_https___arxiv_org_abs_2312_14666
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Submillimeter-wavelength Polarimetry of IRC+10216
Andersson, B-G
Karoly, Janik
Bastien, Pierre
Soam, Archana
Coudé, Simon
Tahani, Mehrnoosh
Gordon, Michael S.
Fox-Middleton, Sydney
Solar and Stellar Astrophysics
Astrophysics of Galaxies
We present SCUBA-2/POL-2 850 $μ$m polarimetric observations of the circumstellar envelope (CSE) of the carbon-rich asymptotic giant branch (AGB) star IRC+10216. Both FIR and optical polarization data indicate grains aligned with their long axis in the radial direction relative to the central star. The 850 $μ$m polarization does not show this simple structure. The 850 $μ$m data are indicative, albeit not conclusive, of a magnetic dipole geometry. Assuming such a simple dipole geometry, the resulting 850 $μ$m polarization geometry is consistent with both Zeeman observations and small-scale structure in the CSE. While there is significant spectral line polarization contained within the SCUBA-2 850 $μ$m pass-band for the source, it is unlikely that our broadband polarization results are dominated by line polarization. To explain the required grain alignment, grain mineralogy effects, due to either fossil silicate grains from the earlier oxygen-rich AGB phase of the star, or due to the incorporation of ferromagnetic inclusions in the largest grains, may play a role. We argue that the most likely explanation is due to a new alignment mechanism \citep{arXiv:2009.11304} wherein a charged grain, moving relative to the magnetic field, precesses around the induced electric field and therefore aligns with the magnetic field. This mechanism is particularly attractive as the optical, FIR, and sub-mm wave polarization of the carbon dust can then be explained in a consistent way, differing simply due to the charge state of the grains.
title Submillimeter-wavelength Polarimetry of IRC+10216
topic Solar and Stellar Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2312.14666