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Related papers: Barnard 59: No Evidence for Further Fragmentation

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We present our analysis of a fully sampled, high resolution dust extinction map of the Barnard 59 complex in the Pipe Nebula. The map was constructed with the infrared color excess technique applied to a photometric catalog that combines…

Astrophysics of Galaxies · Physics 2015-05-14 Carlos G. Román-Zúñiga , Charles J. Lada , João F. Alves

The Pipe Nebula, a large nearby molecular cloud lacks obvious signposts of star formation in all but one of more than 130 dust extinction cores that have been identified within it. In order to quantitatively determine the current level of…

Solar and Stellar Astrophysics · Physics 2015-05-14 Jan Forbrich , Charles J. Lada , August A. Muench , João Alves , Marco Lombardi

Understanding the early stages of star formation is a research field of ongoing development, both theoretically and observationally. In this context, molecular data have been continuously providing observational constraints on the gas…

We present a new set of high resolution dust extinction maps of the nearby and essentially starless Pipe Nebula molecular cloud. The maps were constructed from a concerted deep near-infrared imaging survey with the ESO-VLT, ESO-NTT, CAHA…

Astrophysics of Galaxies · Physics 2010-12-23 Carlos Gerardo Román-Zúñiga , João F. Alves , Charles J. Lada , Marco Lombardi

We report new, $\sim$1000 AU spatial resolution observations of 225 GHz dust continuum emission towards the OB cluster-forming molecular clump G33.92+0.11. On parsec scales, this molecular clump presents a morphology with several arm-like…

The Pipe Nebula is a molecular cloud hosting the B59 region as its only active star-forming clump. While the particular importance of outflows in active star forming regions is subject of debate, the quiet nature of the gas in B59 makes it…

Astrophysics of Galaxies · Physics 2015-06-05 A. Duarte-Cabral , A. Chrysostomou , N. Peretto , G. A. Fuller , B. Matthews , G. Schieven , G. R. Davis

The Pipe Nebula is a massive, nearby dark molecular cloud with a low star-formation efficiency which makes it a good laboratory to study the very early stages of the star formation process. The Pipe Nebula is largely filamentary, and…

We present the results of observations toward a low-mass Class-0/I protostar, [BHB2007]#11 (afterwards B59#11) at the nearby (d=130 pc) star forming region, Barnard 59 (B59) in the Pipe Nebula with the Atacama Submillimeter Telescope…

Solar and Stellar Astrophysics · Physics 2015-06-15 C. Hara , Y. Shimajiri , T. Tsukagoshi , Y. Kurono , K. Saigo , F. Nakamura , M. Saito , D. Wilner , R. Kawabe

We have previously analyzed sensitive mid-infrared observations to establish that the Pipe Nebula has a very low star-formation efficiency. That study focused on YSOs with excess infrared emission (i.e, protostars and pre-main sequence…

Solar and Stellar Astrophysics · Physics 2015-05-19 Jan Forbrich , Bettina Posselt , Kevin R. Covey , Charles J. Lada

We have used moderate resolution, near-infrared spectra from the SpeX spectrograph on the NASA Infrared Telescope facility to characterize the stellar content of Barnard 59 (B59), the most active star-forming core in the Pipe Nebula.…

Solar and Stellar Astrophysics · Physics 2015-05-19 Kevin R. Covey , Charles J. Lada , Carlos Roman-Zuniga , August A. Muench , Jan Forbrich , Joana Ascenso

G0.253+0.016 is a molecular clump that appears to be on the verge of forming a high mass, Arches-like cluster. Here we present new ALMA observations of its small-scale (~0.07 pc) 3mm dust continuum and molecular line emission. The data…

We present mid infrared imaging of two young clusters, the Coronet in the CrA cloud core and B59 in the Pipe Nebula, using the FORCAST camera on the Stratospheric Observatory for Infrared Astronomy. We also analyze Herschel Space…

Solar and Stellar Astrophysics · Physics 2021-10-13 G. Sandell , B. Reipurth , W. D. Vacca , N. S. Bajaj

Planetary Nebulae are the ionised ejected envelopes surrounding the remnant cores of dying stars. Theory predicts that main-sequence stars with one to about eight times the mass of our sun may eventually form planetary nebulae. Until now no…

Solar and Stellar Astrophysics · Physics 2019-06-26 Vasiliki Fragkou , Quentin Parker , Albert Zijlstra , Lisa Crause , Helen Barker

A growing body of evidence indicates that the formation of filaments in interstellar clouds is a key component of the star formation process. In this paper, we present new Herschel PACS and SPIRE observations of the B59 and Stem regions in…

We present an analysis of ~3.5 square degrees of submillimetre continuum and extinction data of the Perseus molecular cloud. We identify 58 clumps in the submillimetre map and we identify 39 structures (`cores') and 11 associations of…

Astrophysics · Physics 2008-11-26 Helen Kirk , Doug Johnstone , James Di Francesco

The early evolution during massive star cluster formation is still uncertain. Observing embedded clusters at their earliest stages of formation can provide insight into the spatial and temporal distribution of the stars and thus probe…

Astrophysics of Galaxies · Physics 2017-11-29 M. Andersen , P. J. Barnes , J. C. Tan , J. Kainulainen , G. de Marchi

Infrared images of the dark cloud core B59 were obtained with the Spitzer Space Telescope as part of the "Cores to Disks" Legacy Science project. Photometry from 3.6-70 microns indicates at least 20 candidate low-mass young stars near the…

We report observations of dust continuum emission at 1.2 mm toward the star forming region NGC 6334 made with the SEST SIMBA bolometer array. The observations cover an area of $\sim 2$ square degrees with approximately uniform noise. We…

We present a preliminary analysis of the small-scale structure found in new 70-520 micron continuum maps of the Rosette molecular cloud (RMC), obtained with the SPIRE and PACS instruments of the Herschel Space Observatory. We find 473…

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
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