First BISTRO Observations of the Dark Cloud Taurus L1495A-B10: The Role of the Magnetic Field in the Earliest Stages of Low-mass Star Formation

Author:

Ward-Thompson DerekORCID,Karoly JanikORCID,Pattle KateORCID,Whitworth AnthonyORCID,Kirk JasonORCID,Berry DavidORCID,Bastien PierreORCID,Ching Tao-ChungORCID,Coudé SimonORCID,Hwang JihyeORCID,Kwon WoojinORCID,Soam ArchanaORCID,Wang Jia-WeiORCID,Hasegawa TetsuoORCID,Lai Shih-PingORCID,Qiu KepingORCID,Arzoumanian DorisORCID,Bourke Tyler L.ORCID,Byun Do-YoungORCID,Chen Huei-Ru VivienORCID,Chen Wen PingORCID,Chen Mike,Chen ZhiweiORCID,Cho JungyeonORCID,Choi Minho,Choi Youngwoo,Choi Yunhee,Chrysostomou AntonioORCID,Chung Eun JungORCID,Dai SophiaORCID,Debattista VictorORCID,Di Francesco JamesORCID,Diep Pham NgocORCID,Doi YasuoORCID,Duan Hao-YuanORCID,Duan YanORCID,Eswaraiah ChakaliORCID,Fanciullo LapoORCID,Fiege Jason,Fissel Laura M.ORCID,Franzmann EricaORCID,Friberg PerORCID,Friesen RachelORCID,Fuller GaryORCID,Furuya RayORCID,Gledhill TimORCID,Graves SarahORCID,Greaves JaneORCID,Griffin Matt,Gu QilaoORCID,Han Ilseung,Hayashi SaekoORCID,Hoang ThiemORCID,Houde MartinORCID,Hull Charles L. H.ORCID,Inoue TsuyoshiORCID,Inutsuka Shu-ichiroORCID,Iwasaki Kazunari,Jeong Il-GyoORCID,Johnstone DougORCID,Könyves VeraORCID,Kang Ji-hyunORCID,Kang MijuORCID,Kataoka AkimasaORCID,Kawabata KojiORCID,Kemper FranciscaORCID,Kim JongsooORCID,Kim ShinyoungORCID,Kim GwanjeongORCID,Kim Kyoung HeeORCID,Kim Mi-Ryang,Kim Kee-TaeORCID,Kim Hyosung,Kirchschlager FlorianORCID,Kobayashi Masato I. N.ORCID,Koch Patrick M.ORCID,Kusune TakayoshiORCID,Kwon JungmiORCID,Lacaille KevinORCID,Law Chi-YanORCID,Lee Chang WonORCID,Lee HyeseungORCID,Lee Yong-HeeORCID,Lee Chin-FeiORCID,Lee Jeong-EunORCID,Lee Sang-SungORCID,Li Dalei,Li DiORCID,Li Guangxing,Li Hua-baiORCID,Lin Sheng-JunORCID,Liu Hong-LiORCID,Liu TieORCID,Liu Sheng-YuanORCID,Liu JunhaoORCID,Longmore StevenORCID,Lu XingORCID,Lyo A-RanORCID,Mairs SteveORCID,Matsumura MasafumiORCID,Matthews BrendaORCID,Moriarty-Schieven GeraldORCID,Nagata TetsuyaORCID,Nakamura FumitakaORCID,Nakanishi Hiroyuki,Ngoc Nguyen BichORCID,Ohashi NagayoshiORCID,Onaka TakashiORCID,Park GeumsookORCID,Parsons HarrietORCID,Peretto Nicolas,Priestley Felix,Pyo Tae-SooORCID,Qian LeiORCID,Rao RamprasadORCID,Rawlings JonathanORCID,Rawlings MarkORCID,Retter Brendan,Richer JohnORCID,Rigby AndrewORCID,Sadavoy Sarah,Saito Hiro,Savini GiorgioORCID,Seta Masumichi,Shimajiri YoshitoORCID,Shinnaga HirokoORCID,Tahani MehrnooshORCID,Tamura MotohideORCID,Tang Ya-WenORCID,Tang XindiORCID,Tomisaka KohjiORCID,Tram Le NgocORCID,Tsukamoto Yusuke,Viti SerenaORCID,Wang HongchiORCID,Wu JintaiORCID,Xie JinjinORCID,Yang Meng-Zhe,Yen Hsi-WeiORCID,Yoo HyunjuORCID,Yuan Jinghua,Yun Hyeong-SikORCID,Zenko Tetsuya,Zhang Guoyin,Zhang YapengORCID,Zhang Chuan-PengORCID,Zhou JianjunORCID,Zhu Lei,de Looze Ilse,André PhilippeORCID,Dowell C. Darren,Eden DavidORCID,Eyres Stewart,Falle SamORCID,Le Gouellec Valentin J. M.ORCID,Poidevin FrédérickORCID,Robitaille Jean-FrançoisORCID,van Loo SvenORCID

Abstract

Abstract We present BISTRO Survey 850 μm dust emission polarization observations of the L1495A-B10 region of the Taurus molecular cloud, taken at the James Clerk Maxwell Telescope (JCMT). We observe a roughly triangular network of dense filaments. We detect nine of the dense starless cores embedded within these filaments in polarization, finding that the plane-of-sky orientation of the core-scale magnetic field lies roughly perpendicular to the filaments in almost all cases. We also find that the large-scale magnetic field orientation measured by Planck is not correlated with any of the core or filament structures, except in the case of the lowest-density core. We propose a scenario for early prestellar evolution that is both an extension to, and consistent with, previous models, introducing an additional evolutionary transitional stage between field-dominated and matter-dominated evolution, observed here for the first time. In this scenario, the cloud collapses first to a sheet-like structure. Uniquely, we appear to be seeing this sheet almost face on. The sheet fragments into filaments, which in turn form cores. However, the material must reach a certain critical density before the evolution changes from being field dominated to being matter dominated. We measure the sheet surface density and the magnetic field strength at that transition for the first time and show consistency with an analytical prediction that had previously gone untested for over 50 yr.

Funder

UKRI ∣ Science and Technology Facilities Council

Royal Society

MEXT ∣ Japan Society for the Promotion of Science

MEC ∣ Agencia Estatal de Investigación

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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