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The Pipe nebula is a massive, nearby, filamentary dark molecular cloud with a low star-formation efficiency threaded by a uniform magnetic field perpendicular to its main axis. It harbors more than a hundred, mostly quiescent, very…

Context. The Pipe nebula is a molecular cloud that lacks star formation feedback and has a relatively simple morphology and velocity structure. This makes it an ideal target to test cloud evolution through collisions. Aims. We aim at…

Astrophysics of Galaxies · Physics 2015-01-28 Pau Frau , Josep M. Girart , Felipe Alves , Gabriel A. P. Franco , Toshikazu Onishi , Carlos G. Román-Zúñiga

In this paper we present the results of a systematic investigation of an entire population of starless dust cores within a single molecular cloud. Analysis of extinction data shows the cores to be dense objects characterized by a narrow…

Recent extinction studies of the Pipe Nebula (d=130 pc) reveal many cores spanning a range in mass from 0.2 to 20.4 Msun. These dense cores were identified via their high extinction and comprise a starless population in a very early stage…

Astrophysics · Physics 2009-11-13 J. M. Rathborne , C. J. Lada , A. A. Muench , J. F. Alves , M. Lombardi

Pre-stellar cores within molecular clouds provide the very initial conditions in which stars are formed. We use the IRAM 30m telescope and the PdBI to study the chemical and physical properties of the starless core FeSt 1-457 (Core 109), in…

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

Multi-wavelength observations in the sub-mm regime provide information on the distribution of both the dust column density and the effective dust temperature in molecular clouds. In this study, we created high-resolution and…

Astrophysics of Galaxies · Physics 2018-11-28 Birgit Hasenberger , Marco Lombardi , João Alves , Jan Forbrich , Alvaro Hacar , Charles J. Lada

(abridged) [...] Methods: In a continued study of the molecular core population of the Pipe Nebula, we present a molecular-line survey of 52 cores. Previous research has shown a variety of different chemical evolutionary stages among the…

Solar and Stellar Astrophysics · Physics 2014-09-05 Jan Forbrich , Karin Öberg , Charles J. Lada , Marco Lombardi , Alvaro Hacar , João Alves , Jill M. Rathborne

We used the new IRAM 30-m FTS backend to perform an unbiased ~15 GHz wide survey at 3 mm toward the Pipe Nebula young diffuse starless cores. We found an unexpectedly rich chemistry. We propose a new observational classification based on…

Astrophysics of Galaxies · Physics 2015-06-03 P. Frau , J. M. Girart , M. T. Beltran

We use R-band CCD linear polarimetry collected for about 12000 background field stars in 46 fields of view toward the Pipe nebula to investigate the properties of the polarization across this dark cloud. Based on archival 2MASS data we…

Astrophysics of Galaxies · Physics 2015-05-19 G. A. P. Franco , F. O. Alves , J. M. Girart

We analyse the geometry of the Pipe Nebula, drawn by the distribution ($Q$-spatial parameter) and hierarchy ($\Lambda$ spatial segregation) of column density peaks previously detected and catalogued. By analysing the mass and volume density…

Astrophysics of Galaxies · Physics 2018-07-04 Emilo J. Alfaro , Carlos Román-Zúñiga

We present molecular-line observations of 94 dark cloud cores identified in the Pipe nebula through near-IR extinction mapping. Using the Arizona Radio Observatory 12m telescope, we obtained spectra of these cores in the J=1-0 transition of…

Astrophysics · Physics 2009-11-13 August A. Muench , Charles J. Lada , Jill M. Rathborne , João F. Alves , M. Lombardi

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

Magnetic fields are proposed to play an important role in the formation and support of self-gravitating clouds and the formation and evolution of protostars in such clouds. We use R-band linear polarimetry collected for about 12000 stars in…

Astrophysics · Physics 2008-06-09 F. O. Alves , G. A. P. Franco , J. M. Girart

We aim to investigate the polarization properties of a starless core in a very early evolutionary stage. Linear polarization data reveal the properties of the dust grains in the distinct phases of the interstellar medium. Our goal is to…

Solar and Stellar Astrophysics · Physics 2014-09-17 Felipe Alves , Pau Frau , Josep M. Girart , Gabriel A. P. Franco , Fábio P. Santos , Helmut Wiesemeyer

In this paper we derive an improved core mass function (CMF) for the Pipe Nebula from a detailed comparison between measurements of visual extinction and molecular-line emission. We have compiled a refined sample of 201 dense cores toward…

Astrophysics of Galaxies · Physics 2011-02-11 J. M. Rathborne , C. J. Lada , A. A. Muench , J. F. Alves , J. Kainulainen , M. Lombardi

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

Observations of the Pipe Nebula have led to the discovery of dense starless cores. The mass of most cores is too small for their self gravity to hold them together. Instead, they are thought to be pressure confined. The observed dense…

Astrophysics of Galaxies · Physics 2015-06-15 Xu Huang , Tingtao Zhou , D. N. C. Lin

Context. The properties of dust grains, in particular their size distribution, are expected to differ from the interstellar medium to the high-density regions within molecular clouds. Aims. We measure the mid-infrared extinction law…

Astrophysics of Galaxies · Physics 2015-06-12 J. Ascenso , C. J. Lada , J. Alves , C. G. Román-Zúñiga , M. Lombardi

The detailed magnetic field structure of the starless dense core CB81 (L1774, Pipe 42) in the Pipe Nebula was determined based on near-infrared polarimetric observations of background stars to measure dichroically polarized light produced…

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