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JCMT BISTRO Observations: Magnetic Field Morphology of Bubbles Associated with NGC 6334

Tahani et al. (2023)

Thiem Hoang #25 Co-author 황지혜 #26 Co-author 강지현 #27 Co-author Kyoung Hee Kim #28 Co-author Chang Won Lee #31 Co-author Do-Young Byun #50 Co-author Choi, Minho #54 Co-author 최윤희 #55 Co-author 한일승 #67 Co-author 정일교 #73 Co-author 강미주 #74 Co-author 강성주 #75 Co-author KIM, JONGSOO #81 Co-author Kee-Tae Kim #82 Co-author Kim, Mi-Ryang #83 Co-author Shinyoung Kim #84 Co-author Sang-Sung Lee #94 Co-author 여아란 #103 Co-author Park, Geumsook #111 Co-author 유현주 #131 Co-author
THE ASTROPHYSICAL JOURNAL IF 5.521 A 등급
JCMT(James Clerk Maxwell Telescope)

Abstract

We study the Hii regions associated with the NGC 6334 molecular cloud observed in the submillimeter and taken as part of the B-fields In STar-forming Region Observations Survey. In particular, we investigate the polarization patterns and magnetic field morphologies associated with these Hii regions. Through polarization pattern and pressure calculation analyses, several of these bubbles indicate that the gas and magnetic field lines have been pushed away from the bubble, toward an almost tangential (to the bubble) magnetic field morphology. In the densest part of NGC 6334, where the magnetic field morphology is similar to an hourglass, the polarization observations do not exhibit observable impact from Hii regions. We detect two nested radial polarization patterns in a bubble to the south of NGC 6334 that correspond to the previously observed bipolar structure in this bubble. Finally, using the results of this study, we present steps (incorporating computer vision; circular Hough transform) that can be used in future studies to identify bubbles that have physically impacted magnetic field lines.

AI Classification

Maturity Tier

Tier 1 — Classical ML

AI Role

detection / segmentation

incidental

Techniques

classical-ML

Tasks

detection/segmentation

Subfield

ISM

image

Flags

Develops AI method
· Classification confidence: 70%