ALMA Survey of Orion Planck Galactic Cold Clumps (ALMASOP): detection of extremely high-density compact structure of prestellar cores and multiple substructures within
Author
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Sahu, Dipen
Author
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Liu, Sheng-Yuan
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Liu, Tie
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Evans II, Neal J.
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Hirano, Naomi
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Tatematsu, Ken'ichi
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Lee, Chin-Fei
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Kim, Kee-Tae
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Dutta, Somnath
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Alina, Dana
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Bronfman, Leonardo
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Cunningham, María
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Eden, David J.
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Garay Brignardello, Guido Alejandro
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Goldsmith, Paul F.
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He, Jinhua
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Hsu, Shih-Ying
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Goldsmith, Paul F.
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He, Jinhua
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Hsu, Shih-Ying
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Jhan, Kai-Syun
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Johnstone, Doug
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Juvela, Mika
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Kim, Gwanjeong
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Kuan, Yi-Jehng
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Kwon, Woojin
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Lee, Chang Won
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Lee, Jeong-Eun
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Li, Di
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Li, Pak Shing
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Li, Shanghuo
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Luo, Qiu-Yi
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Montillaud, Julien
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Moragha, Anthony
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Pelkonen, Veli-Matti
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Qin, Sheng-Li
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Ristorcelli, Isabelle
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Sanhueza, Patricio
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Shang, Hsien
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Shen, Zhi-Qiang
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Soam, Archana
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Wu, Yuefang
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Zhang, Qizhou
Author
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Zhou, Jianjun
Admission date
dc.date.accessioned
2022-05-04T15:52:25Z
Available date
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2022-05-04T15:52:25Z
Publication date
dc.date.issued
2021
Cita de ítem
dc.identifier.citation
The Astrophysical Journal Letters, 907:L15 (9pp), 2021 January 20
es_ES
Identifier
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10.3847/2041-8213/abd3aa
Identifier
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https://repositorio.uchile.cl/handle/2250/185254
Abstract
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Prestellar cores are self-gravitating dense and cold structures within molecular clouds where future stars are born. They are expected, at the stage of transitioning to the protostellar phase, to harbor centrally concentrated dense (sub)structures that will seed the formation of a new star or the binary/multiple stellar systems. Characterizing this critical stage of evolution is key to our understanding of star formation. In this work, we report the detection of high-density (sub)structures on the thousand-astronomical-unit (au) scale in a sample of dense prestellar cores. Through our recent ALMA observations toward the Orion Planck Galactic Cold Clumps, we have found five extremely dense prestellar cores, which have centrally concentrated regions of similar to 2000 au in size, and several 10(7) cm(-3) in average density. Masses of these centrally dense regions are in the range of 0.30 to 6.89 M. For the first time, our higher resolution observations (0.8 '' similar to 320 au) further reveal that one of the cores shows clear signatures of fragmentation; such individual substructures/fragments have sizes of 800-1700 au, masses of 0.08 to 0.84 M, densities of 2 - 8 x 10(7) cm(-3), and separations of similar to 1200 au. The substructures are massive enough (greater than or similar to 0.1 M) to form young stellar objects and are likely examples of the earliest stage of stellar embryos that can lead to widely (similar to 1200 au) separated multiple systems.
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Patrocinador
dc.description.sponsorship
Ministry of Science and Technology, China 108-2112-M-001-048-
108-2112-M-001-052-
international partnership program of the Chinese Academy of Sciences 114231KYSB20200009
National Natural Science Foundation of China (NSFC) 12073061
Shanghai Pujiang Program 20PJ1415500
ANID AFB 170002
AFB-170002
National Natural Science Foundation of China (NSFC) U1631237
NRC Canada
Natural Sciences and Engineering Research Council of Canada (NSERC)
Spanish Government AYA2017-88754-P
State Agency for Research of the Spanish Ministry of Science and Innovation through the "Unit of Excellence Maria de Maeztu 2020-2023" award CEX2019-000918-M
Basic Science Research Program through the National Research Foundation of Korea (NRF) - Ministry of Education, Science and Technology NRF-2019R1A2C1010851
National Science Foundation (NSF) AST-1715876
National Natural Science Foundation of China (NSFC) 11911530226
11725313
11873086
Ministry of Education, Culture, Sports, Science and Technology, Japan (MEXT)
Japan Society for the Promotion of Science
Grants-in-Aid for Scientific Research (KAKENHI) 20H05645
Yunnan Province of China 2017HC018
Chinese Academy of Sciences
MoST 108-2112-M-001-017
MoST 109-2112-M-001-023
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Lenguage
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en
es_ES
Publisher
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IOP
es_ES
Type of license
dc.rights
Attribution-NonCommercial-NoDerivs 3.0 United States
ALMA Survey of Orion Planck Galactic Cold Clumps (ALMASOP): detection of extremely high-density compact structure of prestellar cores and multiple substructures within