Mapping and characterizing magnetic fields in the Rho Ophiuchus-A molecular cloud with SOFIA/HAWC$+$

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Main Authors: Lê, Ngân, Tram, Le Ngoc, Karska, Agata, Hoang, Thiem, Diep, Pham Ngoc, Hanasz, Michał, Ngoc, Nguyen Bich, Phuong, Nguyen Thi, Menten, Karl M., Wyrowski, Friedrich, Nguyen, Dieu D., Hoang, Thuong Duc, Khang, Nguyen Minh
Format: Preprint
Published: 2024
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author Lê, Ngân
Tram, Le Ngoc
Karska, Agata
Hoang, Thiem
Diep, Pham Ngoc
Hanasz, Michał
Ngoc, Nguyen Bich
Phuong, Nguyen Thi
Menten, Karl M.
Wyrowski, Friedrich
Nguyen, Dieu D.
Hoang, Thuong Duc
Khang, Nguyen Minh
author_facet Lê, Ngân
Tram, Le Ngoc
Karska, Agata
Hoang, Thiem
Diep, Pham Ngoc
Hanasz, Michał
Ngoc, Nguyen Bich
Phuong, Nguyen Thi
Menten, Karl M.
Wyrowski, Friedrich
Nguyen, Dieu D.
Hoang, Thuong Duc
Khang, Nguyen Minh
contents (abridged) Together with gravity, turbulence, and stellar feedback, magnetic fields (B-fields) are thought to play a critical role in the evolution of molecular clouds and star formation processes. We aim to map the morphology and measure the strength of B-fields of the nearby molecular cloud, rho Ophiuchus-A ($ρ$ Oph-A), and then to understand the role of B-fields in regulating star formation and shaping the cloud. We have analyzed the far-infrared (FIR) polarization of thermal dust emission observed by SOFIA/HAWC$+$ at 89 and 154 $μ$m toward the densest part of $ρ$ Oph-A, which is irradiated by the nearby B3/4 star, Oph-S1. The cloud exhibits well-ordered B-fields with magnetic orientations mainly perpendicular to the ridge of the cloud toward the densest region and B-field strengths are in the range of 0.2-2.5 mG, using the Davis-Chandrasekhar-Fermi method. The B-fields are strongest at the densest part of the cloud, which is associated with the starless core SM1, and decreases toward the outskirts of the cloud. By calculating the map of the mass-to-flux ratio, Alfvén Mach number, and plasma $β$ parameter in $ρ$ Oph-A, we find that the cloud is predominantly magnetically sub-critical, sub-Alfvénic, which implies that the cloud is supported by strong B-fields that dominate over gravity, turbulence, and thermal gas energy. Measured B-field strengths at two densest subregions using other methods that account for the compressible mode are relatively lower than that measured with the DCF method but do not significantly change our conclusions on the roles of B-fields relative to gravity and turbulence on star formation. A virial analysis suggests that the cloud is gravitationally unbound. We find that B-fields are sufficiently strong to support the cloud against radiative feedback and to regulate the shape of the cloud.
format Preprint
id arxiv_https___arxiv_org_abs_2408_17122
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Mapping and characterizing magnetic fields in the Rho Ophiuchus-A molecular cloud with SOFIA/HAWC$+$
Lê, Ngân
Tram, Le Ngoc
Karska, Agata
Hoang, Thiem
Diep, Pham Ngoc
Hanasz, Michał
Ngoc, Nguyen Bich
Phuong, Nguyen Thi
Menten, Karl M.
Wyrowski, Friedrich
Nguyen, Dieu D.
Hoang, Thuong Duc
Khang, Nguyen Minh
Astrophysics of Galaxies
(abridged) Together with gravity, turbulence, and stellar feedback, magnetic fields (B-fields) are thought to play a critical role in the evolution of molecular clouds and star formation processes. We aim to map the morphology and measure the strength of B-fields of the nearby molecular cloud, rho Ophiuchus-A ($ρ$ Oph-A), and then to understand the role of B-fields in regulating star formation and shaping the cloud. We have analyzed the far-infrared (FIR) polarization of thermal dust emission observed by SOFIA/HAWC$+$ at 89 and 154 $μ$m toward the densest part of $ρ$ Oph-A, which is irradiated by the nearby B3/4 star, Oph-S1. The cloud exhibits well-ordered B-fields with magnetic orientations mainly perpendicular to the ridge of the cloud toward the densest region and B-field strengths are in the range of 0.2-2.5 mG, using the Davis-Chandrasekhar-Fermi method. The B-fields are strongest at the densest part of the cloud, which is associated with the starless core SM1, and decreases toward the outskirts of the cloud. By calculating the map of the mass-to-flux ratio, Alfvén Mach number, and plasma $β$ parameter in $ρ$ Oph-A, we find that the cloud is predominantly magnetically sub-critical, sub-Alfvénic, which implies that the cloud is supported by strong B-fields that dominate over gravity, turbulence, and thermal gas energy. Measured B-field strengths at two densest subregions using other methods that account for the compressible mode are relatively lower than that measured with the DCF method but do not significantly change our conclusions on the roles of B-fields relative to gravity and turbulence on star formation. A virial analysis suggests that the cloud is gravitationally unbound. We find that B-fields are sufficiently strong to support the cloud against radiative feedback and to regulate the shape of the cloud.
title Mapping and characterizing magnetic fields in the Rho Ophiuchus-A molecular cloud with SOFIA/HAWC$+$
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2408.17122