We present optical depth and temperature maps of the Perseus molecular cloud, obtained combining dust emission data from the Herschel and Planck satellites and 2MASS/NIR dust extinction maps. The maps have a resolution of 36 arcsec in the Herschel regions, and of 5 arcmin elsewhere. The dynamic range of the optical depth map ranges from 1 7 10-2 mag up to 20 mag in the equivalent K-band extinction. We also evaluate the ratio between the 2.2 \u3bcm extinction coefficient and the 850 \u3bcm opacity. The value we obtain is close to the one found in the Orion B molecular cloud. We show that the cumulative and the differential area function of the data (which is proportional to the probability distribution function of the cloud column density) ...
$Aims.$ We characterize the molecular-line emission of three clouds whose star-formation rates span ...
The dust emissivity spectral index, β, is a critical parameter for deriving the mass and temperature...
Copyright © 2013 American Astronomical Society / IOP PublishingWe present Herschel observations from...
We present optical depth and temperature maps of the Perseus molecular cloud, obtained combining dus...
We present high-resolution, high dynamic range column-density and color-temperature maps of the Orio...
We present new high resolution and dynamic range dust column density and temperature maps of the Cal...
We use the COMPLETE Survey's observations of the Perseus star-forming region to assess and intercomp...
We present new high resolution and dynamic range dust column density and temperature maps of the Cal...
We investigate the shape of the extinction law in two \(1^{\circ}\) square fields of the Perseus mol...
We present high-resolution, high dynamic range column-density and color-temperature maps of the Orio...
A key parameter to the description of all star formation processes is the density structure of the g...
We use the COMPLETE Survey’s observations of the Perseus star-forming region to assess and in-tercom...
We compute the mid-IR extinction law from 3.6 to 24 mu m in three molecular clouds-Ophiuchus, Perseu...
The dust emissivity spectral index, β, is a critical parameter for deriving the mass and temperature...
We present high-resolution, high dynamic range column-density and color-temperature maps o...
$Aims.$ We characterize the molecular-line emission of three clouds whose star-formation rates span ...
The dust emissivity spectral index, β, is a critical parameter for deriving the mass and temperature...
Copyright © 2013 American Astronomical Society / IOP PublishingWe present Herschel observations from...
We present optical depth and temperature maps of the Perseus molecular cloud, obtained combining dus...
We present high-resolution, high dynamic range column-density and color-temperature maps of the Orio...
We present new high resolution and dynamic range dust column density and temperature maps of the Cal...
We use the COMPLETE Survey's observations of the Perseus star-forming region to assess and intercomp...
We present new high resolution and dynamic range dust column density and temperature maps of the Cal...
We investigate the shape of the extinction law in two \(1^{\circ}\) square fields of the Perseus mol...
We present high-resolution, high dynamic range column-density and color-temperature maps of the Orio...
A key parameter to the description of all star formation processes is the density structure of the g...
We use the COMPLETE Survey’s observations of the Perseus star-forming region to assess and in-tercom...
We compute the mid-IR extinction law from 3.6 to 24 mu m in three molecular clouds-Ophiuchus, Perseu...
The dust emissivity spectral index, β, is a critical parameter for deriving the mass and temperature...
We present high-resolution, high dynamic range column-density and color-temperature maps o...
$Aims.$ We characterize the molecular-line emission of three clouds whose star-formation rates span ...
The dust emissivity spectral index, β, is a critical parameter for deriving the mass and temperature...
Copyright © 2013 American Astronomical Society / IOP PublishingWe present Herschel observations from...