Understanding the relative importance of magnetic field, gravity, and turbulence in star formation at the hub of the giant molecular cloud G148.24+00.41

Author:

Rawat Vineet12ORCID,Samal M R1ORCID,Eswaraiah Chakali3ORCID,Wang Jia-Wei4ORCID,Elia Davide5ORCID,Panigrahy Sandhyarani3,Zavagno A67ORCID,Yadav R K8ORCID,Walker D L9ORCID,Jose J3ORCID,Ojha D K10ORCID,Zhang C P1112ORCID,Dutta S4ORCID

Affiliation:

1. Physical Research Laboratory , Navrangpura, Ahmedabad, Gujarat 380009 , India

2. Department of Physics, Indian Institute of Technology Gandhinagar Palaj , Gandhinagar 382355 , India

3. Indian Institute of Science Education and Research (IISER) Tirupati , Rami Reddy Nagar, Karakambadi Road, Mangalam (P.O.), Tirupati 517 507 , India

4. Academia Sinica Institute of Astronomy and Astrophysics , No.1, Section 4, Roosevelt Road, Taipei 10617 , Taiwan

5. Istituto di Astrofisica e Planetologia Spaziali , INAF, Via Fosso del Cavaliere 100, I-00133 Roma , Italy

6. Aix-Marseille Universite , CNRS, CNES, LAM, 38 rue F. Joliot Curie, F-13388 Marseille Cedex 13 , France

7. Institut Universitaire de France , Paris, 1 rue Descartes, F-75231 Paris Cedex 05 , France

8. National Astronomical Research Institute of Thailand (NARIT) , Sirindhorn AstroPark, 260 Moo 4, T. Donkaew, A. Maerim, Chiangmai 50180 , Thailand

9. Jodrell Bank Centre for Astrophysics, Department of Physics and Astronomy, University of Manchester , Oxford Road, Manchester M13 9PL , UK

10. Department of Astronomy and Astrophysics, Tata Institute of Fundamental Research , Mumbai 400005 , India

11. National Astronomical Observatories, Chinese Academy of Sciences , Beijing 100101 , People’s Republic of China

12. Guizhou Radio Astronomical Observatory, Guizhou University , Guiyang 550000 , People’s Republic of China

Abstract

ABSTRACT The relative importance of magnetic fields, turbulence, and gravity in the early phases of star formation is still not well understood. We report the first high-resolution dust polarization observations at 850 $\mu$m around the most massive clump, located at the hub of the Giant Molecular Cloud G148.24+00.41, using SCUBA-2/POL-2 at the James Clerk Maxwell Telescope. We find that the degree of polarization decreases steadily towards the denser portion of the cloud. Comparing the intensity gradients and local gravity with the magnetic field orientations, we find that local gravity plays a dominant role in driving the gas collapse as the magnetic field orientations and gravity vectors seem to point towards the dense clumps. We also find evidence of U-shaped magnetic field morphology towards a small-scale elongated structure associated with the central clump, hinting at converging accretion flows towards the clump. Our observation has resolved the massive clump into multiple substructures. We study the magnetic field properties of two regions, central clump (CC) and northeastern elongated structure (NES). Using the modified Davis–Chandrasekhar–Fermi method, we determine that the magnetic field strengths of CC and NES are ∼24.0 ± 6.0 $\mu$G and 20.0 ± 5.0 $\mu$G, respectively. The mass-to-flux ratios are found to be magnetically transcritical/supercritical, while the Alfv$\acute{\text{e}}$n Mach number indicates a trans-Alfv$\acute{\text{e}}$nic state in both regions. These results, along with Virial analysis, suggest that at the hub of G148.24+00.41, gravitational energy has an edge over magnetic and kinetic energies.

Funder

SERB

Department of Science and Technology

CAS

Publisher

Oxford University Press (OUP)

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