Using a smoothed particle hydrodynamics (SPH) simulation of a star-forming region in a molecular cloud, we show that the emergence of a clump mass function (CMF) resembling the stellar initial mass function (IMF) is a ubiquitous feature of molecular cloud structure, but caution against its overinterpretation. We employ three different techniques to extract the clumps in this study. In the first two, we interpolate the SPH particle data to two-and three-dimensional grids before performing the clump-find, using position-position (PP) and position-position-velocity (PPV) information, respectively. In the last technique, the clump-finding is performed on the SPH data directly, making use of the full three-dimensional position information. Altho...
We present an analysis of star-forming gas cores in a smooth particle hydrodynamics simulation of a ...
We investigate how the dynamical state of a turbulently supported, 1000 M-circle dot, molecular clou...
Spatial association of clumps from different tracers turns out to be a valuable tool to determine th...
Using a smoothed particle hydrodynamics (SPH) simulation of a star-forming region in a molecular clo...
Observations reveal concentrations of molecular line emission on the sky, called ``clumps,'' in dens...
The mass function of molecular cloud clumps and cores is widely used to compare the results of numer...
One possible mechanism for the formation of molecular clouds is large-scale colliding flows. In this...
Context. Stars form in dense, dusty clumps of molecular clouds, but little is known about their orig...
International audienceContext. Stars form in dense, dusty clumps of molecular clouds, but little is ...
Stars are born from dense cores of gas within molecular clouds. The exact nature of the connection b...
Context. The question how the initial conditions in a star-forming region affect the resulting mass ...
We present an analysis of star-forming gas cores in a smooth particle hydrodynamics simulation of a ...
We investigate how the dynamical state of a turbulently supported, 1000 M-circle dot, molecular clou...
Spatial association of clumps from different tracers turns out to be a valuable tool to determine th...
Using a smoothed particle hydrodynamics (SPH) simulation of a star-forming region in a molecular clo...
Observations reveal concentrations of molecular line emission on the sky, called ``clumps,'' in dens...
The mass function of molecular cloud clumps and cores is widely used to compare the results of numer...
One possible mechanism for the formation of molecular clouds is large-scale colliding flows. In this...
Context. Stars form in dense, dusty clumps of molecular clouds, but little is known about their orig...
International audienceContext. Stars form in dense, dusty clumps of molecular clouds, but little is ...
Stars are born from dense cores of gas within molecular clouds. The exact nature of the connection b...
Context. The question how the initial conditions in a star-forming region affect the resulting mass ...
We present an analysis of star-forming gas cores in a smooth particle hydrodynamics simulation of a ...
We investigate how the dynamical state of a turbulently supported, 1000 M-circle dot, molecular clou...
Spatial association of clumps from different tracers turns out to be a valuable tool to determine th...