The probability distribution function (PDF) of the mass surface density is an essential characteristic of the structure of molecular clouds or the interstellar medium in general. Observations of the PDF of molecular clouds indicate a composition of a broad distribution around the maximum and a decreasing tail at high mass surface densities. The first component is attributed to the random distribution of gas which is modeled using a log-normal function while the second component is attributed to condensed structures modeled using a simple power-law. The aim of this paper is to provide an analytical model of the PDF of condensed structures which can be used by observers to extract information about the condensations. The condensed structures ...
Aims: We examine the interstellar medium (ISM) of M 33 to unveil fingerprints of self-gravitating ga...
A key parameter to the description of all star formation processes is the density structure of the g...
International audienceA key parameter to the description of all star formation processes is the dens...
The probability distribution function (PDF) of the mass surface density of molecular clouds provides...
In this Letter we investigate the shape of the probability distribution of column densities (PDF) in...
In this Letter we investigate the shape of the probability distribution of column densities (PDF) in...
In this Letter we investigate the shape of the probability distribution of column densities (PDF) in...
The structure of molecular clouds can be characterized with the probability distribu-tion function (...
The probability distribution function of column density (PDF) has become the tool of choice for clou...
Aims. We examine the interstellar medium (ISM) of M 33 to unveil fingerprints of self-gravitating ga...
Context. Probability distribution of densities is a fundamental measure of molecular cloud structur...
Context: Probability distribution of densities is a fundamental measure of molecular cloud structure...
International audienceAims: We examine the interstellar medium (ISM) of M 33 to unveil fingerprints ...
The mass function of clumps observed in molecular clouds raises interesting theoretical issues, espe...
International audienceAims: We examine the interstellar medium (ISM) of M 33 to unveil fingerprints ...
Aims: We examine the interstellar medium (ISM) of M 33 to unveil fingerprints of self-gravitating ga...
A key parameter to the description of all star formation processes is the density structure of the g...
International audienceA key parameter to the description of all star formation processes is the dens...
The probability distribution function (PDF) of the mass surface density of molecular clouds provides...
In this Letter we investigate the shape of the probability distribution of column densities (PDF) in...
In this Letter we investigate the shape of the probability distribution of column densities (PDF) in...
In this Letter we investigate the shape of the probability distribution of column densities (PDF) in...
The structure of molecular clouds can be characterized with the probability distribu-tion function (...
The probability distribution function of column density (PDF) has become the tool of choice for clou...
Aims. We examine the interstellar medium (ISM) of M 33 to unveil fingerprints of self-gravitating ga...
Context. Probability distribution of densities is a fundamental measure of molecular cloud structur...
Context: Probability distribution of densities is a fundamental measure of molecular cloud structure...
International audienceAims: We examine the interstellar medium (ISM) of M 33 to unveil fingerprints ...
The mass function of clumps observed in molecular clouds raises interesting theoretical issues, espe...
International audienceAims: We examine the interstellar medium (ISM) of M 33 to unveil fingerprints ...
Aims: We examine the interstellar medium (ISM) of M 33 to unveil fingerprints of self-gravitating ga...
A key parameter to the description of all star formation processes is the density structure of the g...
International audienceA key parameter to the description of all star formation processes is the dens...