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Related papers: Multi-frequency Studies of Massive Cores with Comp…

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In an effort to understand the factors that govern the transition from low- to high-mass star formation, we identify for the first time a sample of intermediate-mass star-forming regions (IM SFRs) where stars up to - but not exceeding - 8…

Astrophysics of Galaxies · Physics 2015-05-19 Kim Arvidsson , Charles R. Kerton , Michael J. Alexander , Henry A. Kobulnicky , Brian Uzpen

We aim at studying with high angular resolution a dense core associated with a low-luminosity IRAS source, IRAS 00213+6530, in order to investigate whether low mass star formation is really taking place in isolation. We performed…

Astrophysics of Galaxies · Physics 2015-05-13 G. Busquet , Aina Palau , R. Estalella , J. M. Girart , G. Anglada , I. Sepúlveda

Aims: We resolve the small-scale structure around the high-mass hot core region G351.77-0.54 to investigate its disk and fragmentation properties. Methods: Using ALMA at 690GHz with baselines exceeding 1.5km, we study the dense gas, dust…

Astrophysics of Galaxies · Physics 2017-07-05 H. Beuther , A. J. Walsh , K. G. Johnston , Th. Henning , R. Kuiper , S. N. Longmore , C. M. Walmsley

The fragmentation mode of high-mass molecular clumps and the accretion processes that form the most massive stars ($M\gtrsim 8M_\odot$) are still not well understood. To this end, we have undertaken a large observational program (CORE)…

Hot cores characterized by rich lines of complex organic molecules are considered as ideal sites for investigating the physical and chemical environments of massive star formation. We present a search for hot cores by using typical…

Context. Low-mass star-forming cores differ from their surrounding molecular cloud in turbulence, shape, and density structure. Aims. We aim to understand how dense cores form out of the less dense cloud material by studying the connection…

Astrophysics of Galaxies · Physics 2015-05-28 A. Hacar , M. Tafalla

We present a 1.1~mm census of dense cores in the Mon~R2 Giant Molecular Cloud with the AzTEC instrument on the Large Millimeter Telescope (LMT). We detect 295 cores (209 starless, and 86 with protostars) in a two square degree shallow…

Context. The different theoretical models concerning the formation of high-mass stars make distinct predictions regarding their progenitors, i.e. the high-mass prestellar cores. However, so far no conclusive observation of such objects has…

Astrophysics of Galaxies · Physics 2021-06-30 E. Redaelli , S. Bovino , A. Giannetti , G. Sabatini , P. Caselli , F. Wyrowski , D. R. G. Schleicher , D. Colombo

We present molecular line imaging observations of three massive molecular outflow sources, G333.6-0.2, G333.1-0.4, and G332.8-0.5, all of which also show evidence for infall, within the G333 giant molecular cloud (GMC). All three are within…

Astrophysics of Galaxies · Physics 2015-09-14 N. Lo , B. Wiles , M. P. Redman , M. R. Cunningham , I. Bains , P. A. Jones , M. G. Burton , L. Bronfman

Active star formation (SF) is tightly related to the dense molecular gas in the giant molecular clouds' dense cores. Our HCN (measure of the dense molecular gas) survey in 65 galaxies (including 10 ultraluminous galaxies) reveals a tight…

Astrophysics · Physics 2009-11-13 Yu Gao

Star formation in our Galaxy occurs in molecular clouds that are self-gravitating, highly turbulent, and magnetized. We study the conditions under which cloud cores inherit large-scale magnetic field morphologies and how the field is…

Astrophysics of Galaxies · Physics 2017-03-29 Philip Mocz , Blakesley Burkhart , Lars Hernquist , Chris McKee , Volker Springel

The mid- and far-infrared view on high-mass star formation, in particular with the results from the Herschel space observatory, has shed light on many aspects of massive star formation. However, these continuum studies lack kinematic…

Astrophysics of Galaxies · Physics 2014-05-21 J. Tackenberg , H. Beuther , Th. Henning , H. Linz , T. Sakai , S. E. Ragan , O. Krause , M. Nielbock , M. Hennemann , J. Pitann , A. Schmiedeke

We present 1.3mm continuum and spectral line images of two massive molecular clumps P1 and P2 in the G28.34+0.06 region with the Submillimeter Array. While the two clumps contain masses of 1000 and 880 \msun, respectively, P1 has a…

Astrophysics of Galaxies · Physics 2011-02-11 Qizhou Zhang , Yang Wang , Thushara Pillai , Jill Rathborne

We report the discovery of two very cold and massive molecular cloud cores in the region ISOSS J18364-0221. The object has been identified by a systematic search for very early evolutionary stages of high-mass stars using the 170 micron…

Astrophysics · Physics 2016-08-30 Stephan M. Birkmann , Oliver Krause , Dietrich Lemke

Most stars form in clusters and groups rather than in isolation. We present $\lesssim 5^{\prime\prime}$ angular resolution ($\sim 2000$ au, or 0.01 pc) Very Large Array NH$_3$ (1,1), (2,2), and (3,3) and 1.3 cm continuum emission…

Astrophysics of Galaxies · Physics 2024-04-12 Rachel K. Friesen , Emma Jarvis

Hot core molecules should be detectable in external active galaxies out to high redshift. We present here a detailed study of the chemistry of star-forming regions under physical conditions that differ significantly from those likely to be…

Astrophysics · Physics 2009-11-13 E. Bayet , S. Viti , D. A. Williams , J. M. C. Rawlings

We mapped the MSX dark cloud G084.81-01.09 in the NH3 (1,1) - (4,4) lines and in the J = 1-0 transitions of 12CO, 13CO, C18O and HCO+ in order to study the physical properties of infrared dark clouds, and to better understand the initial…

Solar and Stellar Astrophysics · Physics 2015-05-27 S. B. Zhang , J. Yang , Y. Xu , J. D. Pandian , K. M. Menten , C. Henkel

To deepen our understanding of star-forming properties, we studied a massive protocluster IRAS 15596-5301 using ALMA 870 um and 3 mm data. High-resolution 870 um data reveal 34 dense cores, including 3 hot molecular cores, with subsequent…

Astrophysics of Galaxies · Physics 2026-02-02 Faxian Chang , Mengyao Tang , Tie Liu , Luis A. Zapata , Dongting Yang , Yaping Peng , Chao Zhang , Fengwei Xu , Y. H. Chen , Shujie Li , Meng Ruan

In the massive star-forming region IRAS 21078+5211, a highly fragmented cluster (0.1~pc in size) of molecular cores is observed, located at the density peak of an elongated (1~pc in size) molecular cloud. A small (1~km/s per 0.1~pc) LSR…

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