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Related papers: Dense cores in the Pipe Nebula: An improved core m…

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The origin of the stellar initial mass function (IMF) and its relation with the core mass function (CMF) are actively debated issues with important implications in astrophysics. Recent observations in the W43 molecular complex of top-heavy…

We present the results of a single-pointing survey of 207 dense cores embedded in Planck Galactic Cold Clumps distributed in five different environments ($\lambda$ Orionis, Orion A, B, Galactic plane, and high latitudes) to identify dense…

We present a detailed study of the Orion B clouds (d~400 pc), imaged with the PACS/SPIRE cameras at 70-500 $\mu$m by the Herschel Gould Belt survey (HGBS). We release new high-res. maps of column density and dust temperature. In the…

Filamentary structures are ubiquitously found in high-mass star-forming clouds. To investigate the relationship between filaments and star formation, we carry out the INFANT (INvestigations of massive Filaments ANd sTar formation) survey, a…

(abridged) We develop a model which describes the coevolution of the mass function of dense cores and of the IMF in a protocluster clump. In the model, cores injected in the clump evolve under the effect of gas accretion. Accretion onto the…

Astrophysics of Galaxies · Physics 2015-05-14 Sami Dib , Mohsen Shadmehri , Paolo Padoan , G. Maheswar , D. K. Ojha , Fazeleh Khajenabi

We present a first look at the SCUBA-2 observations of three sub-regions of the Orion B molecular cloud: LDN 1622, NGC 2023/2024, and NGC 2068/2071, from the JCMT Gould Belt Legacy Survey. We identify 29, 564, and 322 dense cores in L1622,…

The mass function of clumps observed in molecular clouds raises interesting theoretical issues, especially in its relation to the stellar initial mass function. We propose a statistical model of the mass function of prestellar cores (CMF),…

Astrophysics of Galaxies · Physics 2020-03-18 S. Donkov , T. V. Veltchev , Ph. Girichidis , R. S. Klessen

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 new analysis of the properties of star-forming cores in the Perseus molecular cloud, identified in SCUBA 850 micron data. Our goal is to determine which core properties can be robustly identified and which depend on the…

Astrophysics of Galaxies · Physics 2015-05-14 Emily I. Curtis , John S. Richer

We present a comparative study of the physical properties and the spatial distribution of column density peaks in two Giant Molecular Clouds (GMC), the Pipe Nebula and Orion A, which exemplify opposite cases of star cluster formation…

The Core Mass Functions (CMFs) of low-mass star-forming regions are found to resemble the shape of the Initial Mass Function (IMF). A similar result is observed for the dust clumps in high-mass star forming regions, although at spatial…

Astrophysics of Galaxies · Physics 2015-06-05 J. A. Rodón , H. Beuther , P. Schilke

The "Nessie" Nebula is a filamentary infrared dark cloud (IRDC) with a large aspect ratio of over 150:1 (1.5 degrees x 0.01 degrees, or 80 pc x 0.5 pc at a kinematic distance of 3.1 kpc). Maps of HNC (1-0) emission, a tracer of dense…

Astrophysics of Galaxies · Physics 2015-05-19 James M. Jackson , Susanna C. Finn , Edward T. Chambers , Jill M. Rathborne , Robert Simon

The mass distributions of dense cores in star-forming regions are measured to have a shape similar to the initial mass function of stars. This has been generally interpreted to mean that the constituent cores will form individual stars or…

Astrophysics · Physics 2009-11-13 Jonathan J. Swift , Jonathan P. Williams

AIMS: To study the structure of nearby (< 500 pc) dense starless and star-forming cores with the particular goal to identify and understand evolutionary trends in core properties, and to explore the nature of Very Low Luminosity Objects (<…

Astrophysics · Physics 2009-11-13 Jens Kauffmann , Frank Bertoldi , Tyler L. Bourke , Neal J. Evans , Chang Won Lee

The bulk density of a planet, as measured by mass and radius, is a result of planet structure and composition. Relative proportions of iron core, rocky mantle, and gaseous envelopes are degenerate for a given density. This degeneracy is…

Earth and Planetary Astrophysics · Physics 2021-06-01 J. G. Schulze , Ji Wang , J. A. Johnson , B. S. Gaudi , C. T. Unterborn , W. R. Panero

We have obtained multi-wavelength observations of compact Galactic planetary nebulae (PNe) to probe post-Asymptotic Giant Branch (AGB) evolution from the onset of nebular ejection. We analyze new observations from HST to derive the masses…

Solar and Stellar Astrophysics · Physics 2016-09-07 Manuel Moreno-Ibáñez , Eva Villaver , Richard A. Shaw , Letizia Stanghellini

Tracing the compositional link between terrestrial super-Earths and their host stars provides clues to their dominant formation pathway. By constraining the stellar abundances of refractory elements, we can predict the core mass fractions…

Earth and Planetary Astrophysics · Physics 2026-05-13 Drew Weisserman , Nicole Gromek , Ryan Cloutier , Komal Bali , Charles Cadieux , Mykhaylo Plotnykov , Alexandrine L'Heureux , Avidaan Srivastava , Andres Carmona , Yolanda G. C. Frensch , Étienne Artigau , Frédérique Baron , Susana C. C. Barros , Björn Benneke , Xavier Bonfils , François Bouchy , Marta Bryan , Neil J. Cook , Nicolas B. Cowan , Eduardo Cristo , Xavier Delfosse , René Doyon , Xavier Dumusque , David Ehrenreich , Jonay I. González Hernández , David Lafrenière , Izan de Castro Leão , Christophe Lovis , Lison Malo , Bruno L. Canto Martins , Alejandro Suárez Mascareño , Jose Renan De Medeiros , Claudio Melo , Lucile Mignon , Christoph Mordasini , Francesco Pepe , Rafael Rebolo , Jason Rowe , Nuno C. Santos , Damien Ségransan , Stéphane Udry , Diana Valencia , Gregg Wade , José Luan A. Aguiar , Romain Allart , Luc Bazinet , Jean-Baptiste Delisle , Flavie Bélanger , Joshua Blackman , Vincent Bourrier , Pedro Branco , Vincent Bruniquel , Yann Carteret , Marion Cointepas , Antoine Darveau-Bernier , Laurie Dauplaise , Elisa Delgado-Mena , Caroline Dorn , Dhvani Doshi , João Faria , Dasaev O. Fontinele , Thierry Forveille , Jonathan Gagné , Frédéric Genest , Jennifer Glover , Roseane de Lima Gomes , Nolan Grieves , Melissa J. Hobson , H. Jens Hoeijmakers , Farbod Jahandar , Vigneshwaran Krishnamurthy , Pierrot Lamontagne , Pierre Larue , Henry Leath , Olivia Lim , Justin Lipper , Lina Messamah , Yuri S. Messias , Telmo Monteiro , Leslie Moranta , Khaled Al Moulla , Dany Mounzer , Georgia Mraz , Nicola Nari , Louise D. Nielsen , Ares Osborn , Jon Otegi , Léna Parc , Stefan Pelletier , Olivia Pereira , Caroline Piaulet-Ghorayeb , Riley Rosener , Julia Seidel , João Gomes da Silva , Ana Rita Costa Silva , Atanas K. Stefanov , Márcio A. Teixeira , Thomas Vandal , Valentina Vaulato , Joost P. Wardenier , Vincent Yariv

In the solar neighborhood, the Initial Mass Function (IMF) follows is canonically described by the Salpeter power-law slope for the high-mass range. The stellar IMF may directly result from a Core Mass Function (CMF) through accretion,…

Astrophysics of Galaxies · Physics 2026-05-06 B. Thomasson , I. Joncour , E. Moraux , F. Motte , T. Yoo , A. Ginsburg

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

Context: Star formation efficiency (SFE) theories are currently based on statistical distributions of turbulent cloud structures and a simple model of star formation from cores. They remain poorly tested, especially at the highest…

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