The JCMT BISTRO Survey: Revealing the Diverse Magnetic Field Morphologies in Taurus Dense Cores with Sensitive Submillimeter Polarimetry

Author:

Eswaraiah ChakaliORCID,Li Di,Furuya Ray S.ORCID,Hasegawa TetsuoORCID,Ward-Thompson DerekORCID,Qiu KepingORCID,Ohashi NagayoshiORCID,Pattle KateORCID,Sadavoy SarahORCID,Hull Charles L. H.ORCID,Berry DavidORCID,Doi YasuoORCID,Ching Tao-ChungORCID,Lai Shih-PingORCID,Wang Jia-WeiORCID,Koch Patrick M.ORCID,Kwon JungmiORCID,Kwon WoojinORCID,Bastien PierreORCID,Arzoumanian DorisORCID,Coudé SimonORCID,Soam ArchanaORCID,Fanciullo LapoORCID,Yen Hsi-WeiORCID,Liu JunhaoORCID,Hoang ThiemORCID,Ping Chen WenORCID,Shimajiri YoshitoORCID,Liu TieORCID,Chen ZhiweiORCID,Li Hua-baiORCID,Lyo A-RanORCID,Hwang JihyeORCID,Johnstone DougORCID,Rao RamprasadORCID,Bich Ngoc NguyenORCID,Ngoc Diep PhamORCID,Mairs SteveORCID,Parsons HarrietORCID,Tamura MotohideORCID,Tahani MehrnooshORCID,Vivien Chen Huei-RuORCID,Nakamura FumitakaORCID,Shinnaga HirokoORCID,Tang Ya-WenORCID,Cho JungyeonORCID,Won Lee ChangORCID,Inutsuka Shu-ichiroORCID,Inoue Tsuyoshi,Iwasaki KazunariORCID,Qian LeiORCID,Xie JinjinORCID,Li Dalei,Liu Hong-LiORCID,Zhang Chuan-PengORCID,Chen Mike,Zhang Guoyin,Zhu Lei,Zhou JianjunORCID,André PhilippeORCID,Liu Sheng-YuanORCID,Yuan Jinghua,Lu XingORCID,Peretto Nicolas,Bourke Tyler L.ORCID,Byun Do-YoungORCID,Dai Sophia,Duan Yan,Duan Hao-Yuan,Eden DavidORCID,Matthews BrendaORCID,Fiege Jason,Fissel Laura M.ORCID,Kim Kee-TaeORCID,Lee Chin-FeiORCID,Kim JongsooORCID,Pyo Tae-SooORCID,Choi Yunhee,Choi Minho,Chrysostomou AntonioORCID,Jung Chung EunORCID,Ngoc Tram LeORCID,Franzmann EricaORCID,Friberg PerORCID,Friesen RachelORCID,Fuller GaryORCID,Gledhill TimORCID,Graves SarahORCID,Greaves Jane,Griffin MattORCID,Gu QilaoORCID,Han Ilseung,Hatchell JenniferORCID,Hayashi Saeko,Houde MartinORCID,Kawabata KojiORCID,Jeong Il-GyoORCID,Kang Ji-hyunORCID,Kang Sung-juORCID,Kang MijuORCID,Kataoka AkimasaORCID,Kemper FranciscaORCID,Rawlings MarkORCID,Rawlings JonathanORCID,Retter Brendan,Richer JohnORCID,Rigby AndrewORCID,Saito Hiro,Savini GiorgioORCID,Scaife AnnaORCID,Seta Masumichi,Kim GwanjeongORCID,Hee Kim KyoungORCID,Kim Mi-RyangORCID,Kirchschlager FlorianORCID,Kirk JasonORCID,Kobayashi Masato I. N.ORCID,Konyves VeraORCID,Kusune TakayoshiORCID,Lacaille KevinORCID,Law Chi-YanORCID,Lee Sang-SungORCID,Lee Yong-HeeORCID,Matsumura MasafumiORCID,Moriarty-Schieven GeraldORCID,Nagata TetsuyaORCID,Nakanishi Hiroyuki,Onaka TakashiORCID,Park GeumsookORCID,Tang XindiORCID,Tomisaka KohjiORCID,Tsukamoto Yusuke,Viti SerenaORCID,Wang HongchiORCID,Whitworth Anthony,Yoo HyunjuORCID,Yun Hyeong-Sik,Zenko Tetsuya,Zhang YapengORCID,de Looze Ilse,Dowell C. Darren,Eyres Stewart,Falle SamORCID,Robitaille Jean-FrançoisORCID,van Loo Sven

Abstract

Abstract We have obtained sensitive dust continuum polarization observations at 850 μm in the B213 region of Taurus using POL-2 on SCUBA-2 at the James Clerk Maxwell Telescope as part of the B-fields in STar-forming Region Observations (BISTRO) survey. These observations allow us to probe magnetic field (B-field) at high spatial resolution (∼2000 au or ∼0.01 pc at 140 pc) in two protostellar cores (K04166 and K04169) and one prestellar core (Miz-8b) that lie within the B213 filament. Using the Davis–Chandrasekhar–Fermi method, we estimate the B-field strengths in K04166, K04169, and Miz-8b to be 38 ± 14, 44 ± 16, and 12 ± 5 μG, respectively. These cores show distinct mean B-field orientations. The B-field in K04166 is well ordered and aligned parallel to the orientations of the core minor axis, outflows, core rotation axis, and large-scale uniform B-field, in accordance with magnetically regulated star formation via ambipolar diffusion taking place in K04166. The B-field in K04169 is found to be ordered but oriented nearly perpendicular to the core minor axis and large-scale B-field and not well correlated with other axes. In contrast, Miz-8b exhibits a disordered B-field that shows no preferred alignment with the core minor axis or large-scale field. We found that only one core, K04166, retains a memory of the large-scale uniform B-field. The other two cores, K04169 and Miz-8b, are decoupled from the large-scale field. Such a complex B-field configuration could be caused by gas inflow onto the filament, even in the presence of a substantial magnetic flux.

Funder

National Natural Science Foundation of China

International Partnership Program of Chinese Academy of Sciences

Basic Science Research Program through the National Research Foundation of Korea (NRF) funded by the Ministry of Education, Science and Technology

Ministry of Science and Technology (MOST) grant MOST

NAOJ Fellowship and JSPS KAKENHI grants

NSF grant

Vietnam National Foundation for Science and Technology Development (NAFOSTED) grant

Women In Science, Engineering and Technology (WISET) grants

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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