Please use this identifier to cite or link to this item: http://hdl.handle.net/2248/9021
Title: BISTRO Survey: Gravity-dominated and magnetically regulated star formation in M17 SW
Authors: Zhao, Mengke
Qiu, Keping
Kang, Ji-hyun
Tang, Xindi
Whitworth, Anthony
Ward-Thompson, Derek
Onaka, Takashi
Lee, Chang Won
Bourke, Tyler L
Hwang, Jihye
Eden, David
Hoang, Thiem
Tamura, Motohide
Kwon, Jungmi
Priestley, Felix
Kim, Kee-Tae
Arzoumanian, Doris
Francesco, James Di
Eswaraiah, Chakali
Johnstone, Doug
Nguyen, Bich Ngoc
Chen, Zhiwei
Sadavoy, Sarah
Archana Soam
Furuya, Ray
Lai, Shih-Ping
Kwon, Woojin
Bastien, Pierre
Pattle, Kate
Berry, David
Keywords: Interstellar magnetic fields
Star formation
Interstellar clouds
Issue Date: 1-Jul-2026
Publisher: American Astronomical Society
Citation: The Astrophysical Journal, Vol. 1005, No. 1, 91
Abstract: We present high-resolution magnetic field maps of the M17 SW molecular cloud using JCMT 850 μm dust polarization at scale of 14″. The magnetic field exhibits a distinct arc-like structure that encircles three dense clumps (C1, C2, and C3). By combining polarization data with ammonia line observations, the plane-of-sky magnetic field strength, measured using the Skalidis─Tassis method to minimize angle dispersion errors, ranges from 0.1 to 2.4 mG (mean: 0.54 mG). Energy budget analysis reveals a hierarchy dominated by gravity (eG ≍ 10−7.8 erg cm−3), which exceeds both magnetic (eB ≍ 10−8.3 erg cm−3) and turbulent (ek ≍ 10−8.7 erg cm−3) energies. Since all three energy densities lie within 1 order of magnitude, gravitational dominance acts primarily as the global driver, while the system remains in a state of near equipartition. Structurally, the northeastern boundary shows magnetic field lines perpendicular to the shock front, consistent with compression from the adjacent H II region. Within the cloud, magnetic field lines generally align with gravity to assist collapse, but turn perpendicular to gravity within curved accretion bridges. This configuration provides support against radial collapse while guiding gas flow. Kinematic evidence suggests that these channels transport material from clump C3 onto the massive clump C2. Star formation in M17 SW is globally driven by gravity but locally regulated by the magnetic field structure.
Description: Open Access
Original content from this work may be used under the terms of the Creative Commons Attribution 4.0 licence. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.
URI: http://hdl.handle.net/2248/9021
ISSN: 1538-4357
Appears in Collections:IIAP Publications

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