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Massive stars (M $\gsim 10$ \msun) form from collapse of parsec-scale molecular clumps. How molecular clumps fragment to give rise to massive stars in a cluster with a distribution of masses is unclear. We search for cold cores that may…

Astrophysics of Galaxies · Physics 2015-05-27 Qizhou Zhang , Ke Wang

We present a multi-wavelength investigation of a large-scale physical system containing the W33 complex. The extended system (~50 pc x 37 pc) is selected based on the distribution of molecular gas at [29.6, 60.2] km/s and of 88 ATLASGAL 870…

Astrophysics of Galaxies · Physics 2020-06-10 L. K. Dewangan , T. Baug , D. K. Ojha

Dense cores in massive, parsec-scale molecular clumps are sites that harbor protocluster formation. We present results from observations towards a hub-filament structure of a massive Infrared Dark Cloud (IRDC) G14.225-0.506 using the…

Astrophysics of Galaxies · Physics 2025-03-14 Yanhanle Zhao , Qizhou Zhang , Junhao Liu , Xing Pan , Lingzhen Zeng

The infrared dark clouds (IRDCs) G11.11$-$0.12 and G28.34$+$0.06 are two of the best-studied IRDCs in our Galaxy. These two clouds host clumps at different stages of evolution, including a massive dense clump in both clouds that is dark…

Filamentary infrared dark clouds (IRDCs) are believed to represent the initial conditions for massive star and cluster formation. We investigate the IRDC G035.39-00.33 using SiO, H13CO+, CH3OH, and CS emission observed with ALMA at…

The physical, chemical and kinetic characteristics of 12 northern infrared dark clouds (IRDCs) are systematic studied using the $\rm ^{13}CO $ (1-0) and $\rm C^{18}O$ (1-0) lines, observed with the PMO 13.7 m radio telescope, the 1.1 mm…

Astrophysics of Galaxies · Physics 2015-06-22 Xiao-Lan Liu , Jun-Jie Wang , Jin-Long Xu

Infrared Dark Clouds (IRDCs) are dark clouds seen in silhouette in mid-infrared surveys. They are thought to be the birthplace of massive stars, yet remarkably little information exists on the properties of the population as a whole (e.g.…

Astrophysics of Galaxies · Physics 2015-05-14 D. J. Marshall , G. Joncas , A. P. Jones

We have observed the IRDC G028.23-00.19 at 3.3 mm using CARMA. In its center, the IRDC hosts one of the most massive (~1520 Msun) quiescent, cold (12 K) clumps known (MM1). The low temperature, high NH_2D abundance, narrow molecular line…

InfraRed Dark Clouds (IRDCs) are extinction features against the Galactic infrared background, mainly in mid-infrared band. Recently they were proposed to be potential sites of massive star formation. In this work we have made 12CO, 13CO,…

Astrophysics · Physics 2009-11-13 Fujun Du , Ji Yang

We present new 3-mm continuum and molecular lines observations from the ATOMS survey towards the massive protostellar clump, MM1, located in the filamentary infrared dark cloud (IRDC), G034.43+00.24 (G34). The lines observed are the tracers…

The filamentary infrared dark cloud L1287 is actively forming a dense cluster of low-mass YSOs at its inner $\sim$0.1 pc region. To help understand the origin of this low-mass YSO cluster, the present work aims at resolving the gas…

Solar and Stellar Astrophysics · Physics 2019-01-23 Carmen Juárez , Hauyu-Baobab Liu , Josep M. Girart , Aina Palau , Gemma Busquet , Roberto Galván-Madrid , Naomi Hirano , Yuxin Lin

At the onset of high-mass star formation, accreting protostars are deeply embedded in massive cores made of gas and dust. Their spectral energy distribution is still dominated by the cold dust and rises steeply from near-to far-infrared…

Astrophysics · Physics 2011-02-11 H. Beuther , J. Steinacker

Infrared dark clouds (IRDCs) are dense, molecular structures in the interstellar medium that can harbour sites of high-mass star formation. IRDCs contain supersonic turbulence, which is expected to generate shocks that locally heat pockets…

Astrophysics of Galaxies · Physics 2015-05-08 A. Pon , P. Caselli , D. Johnstone , M. Kaufman , M. J. Butler , F. Fontani , I. Jiménez-Serra , J. C. Tan

We have used deep near-infrared observations with adaptive optics to discover a distributed population of low-mass protostars within the filamentary Infrared Dark Cloud G34.43+00.24. We use maps of dust emission at multiple wavelengths to…

We examine an Infrared Dark Cloud (IRDC) at high spatial resolution as a means to study rotation, outflow, and infall at the onset of massive star formation. Submillimeter Array observations combined with IRAM 30 meter data in 12CO(2--1)…

Solar and Stellar Astrophysics · Physics 2015-05-13 C. Fallscheer , H. Beuther , Q. Zhang , E. Keto , T. K. Sridharan

We obtained 350 and 850 micron continuum maps of the infrared dark cloud G049.40-00.01. Twenty-one dense clumps were identified within G049.40-00.01 based on the 350 micron continuum map with an angular resolution of about 9.6". We present…

Astrophysics of Galaxies · Physics 2015-05-30 Miju Kang , Minho Choi , John H. Bieging , Jeonghee Rho , Jeong-Eun Lee , Chao-Wei Tsai

This paper presents results from modelling 450 micron and 850 micron continuum and HCO+ line observations of three distinct cores of an infrared dark cloud (IRDC) directed toward the W51 GMC. In the sub-mm continuum these cores appear as…

Astrophysics · Physics 2009-11-11 C. W. Ormel , R. F. Shipman , V. Ossenkopf , F. P. Helmich

How and when the mass distribution of stars in the Galaxy is set is one of the main issues of modern astronomy. Here we present a statistical study of mass and density distributions of infrared dark clouds (IRDCs) and fragments within them.…

Astrophysics of Galaxies · Physics 2015-05-19 N. Peretto , G. A. Fuller

We have studied a star-forming complex S193 using near-infrared (NIR) observations and other archival data covering optical to radio wavelengths. We identified stellar clusters in the complex using the NIR photometric data and estimated the…

Infrared Dark Clouds (IRDCs) are very dense and highly extincted regions that host the initial conditions of star and stellar cluster formation. It is crucial to study the kinematics and molecular content of IRDCs to test their formation…

Astrophysics of Galaxies · Physics 2020-10-21 G. Cosentino , I. Jiménez-Serra , J. D. Henshaw , P. Caselli , S. Viti , A. T. Barnes , J. C. Tan , F. Fontani , B. Wu