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BISTRO Survey: Gravity-dominated and Magnetically Regulated Star Formation in M17 SW

  • Mengke Zhao
  • , Keping Qiu
  • , Ji Hyun Kang
  • , Xindi Tang
  • , Anthony Whitworth
  • , Derek Ward-Thompson
  • , Takashi Onaka
  • , Chang Won Lee
  • , Tyler L. Bourke
  • , Jihye Hwang
  • , David Eden
  • , Thiem Hoang
  • , Motohide Tamura
  • , Jungmi Kwon
  • , Felix Priestley
  • , Kee Tae Kim
  • , Doris Arzoumanian
  • , James Di Francesco
  • , Chakali Eswaraiah
  • , Doug Johnstone
  • Bich Ngoc Nguyen, Zhiwei Chen, Sarah Sadavoy, Archana Soam, Ray S. Furuya, Shih Ping Lai, Woojin Kwon, Pierre Bastien, Kate Pattle, David Berry
  • Nanjing University
  • Korea Astronomy and Space Science Institute
  • Xinjiang Astronomical Observatory
  • Cardiff University
  • University of Central Lancashire
  • University of Tokyo
  • University of Science and Technology
  • SKA Organisation, UK
  • Jodrell Bank Centre for Astrophysics
  • University of Manchester
  • Kyushu University
  • Armagh Observatory
  • National Astronomical Observatory of Japan
  • Astrobiology Center, National Institutes of Natural Sciences
  • National Research Council Canada
  • University of Victoria
  • Indian Institute of Science Education and Research (IISER)
  • Vietnam Academy of Science and Technology
  • Chinese Academy of Sciences
  • Queen's University, Kingston
  • Indian Institute of Astrophysics
  • Tokushima University
  • National Tsing Hua University
  • Academia Sinica
  • Seoul National University
  • Université de Montréal
  • University College London
  • East Asian Observatory

Research output: Contribution to journalArticlepeer-review

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.

Original languageEnglish
Article number91
Number of pages15
JournalAstrophysical Journal
Volume1005
Issue number1
Early online date26 Jun 2026
DOIs
Publication statusPublished - 1 Jul 2026

Keywords

  • Interstellar clouds (834)
  • Interstellar magnetic fields (845)
  • Star formation (1569)

ASJC Scopus subject areas

  • Astronomy and Astrophysics
  • Space and Planetary Science

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