Exploring the structure and dynamics of cold starless clouds is necessary to understand the different steps leading to the formation of protostars. Because clouds evolve slowly, many of them must be studied in detail to pick up different moments of a cloud's lifetime. We study here L1506C in the Taurus region, a core with interesting dust properties which have been evidenced with the PRONAOS balloon-borne telescope. To trace the mass content of L1506C and its kinematics, we mapped the dust emission, and the line emission of two key species, C18O and N2H+ (plus 13CO and C17O). This cloud shows peculiar features: i) a large envelope traced solely by 13CO holding a much smaller core with a strong C18O depletion in its center despite a low maxi...
International audienceContext. With the initial steps of the star formation process in the densest p...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
Context. Chamaeleon I is the most active region in terms of star formation in the Chamaeleon molecul...
Exploring the structure and dynamics of cold starless clouds is necessary to understand the differen...
Context. Core condensation is a critical step in the star-formation process, but it is still poorly ...
We observed the pre-stellar core L1521F in dust emission at 1.2 mm and in two transitions each of , ...
Context. Core condensation is a critical step in the star-formation process, but is still poorly cha...
Prestellar cores, the birthplace of Sun-like stars, form from the fragmentation of the filamentary s...
Context. Low-mass star-forming cores differ from their surrounding molecular cloud in turbulence, sh...
We present Herschel,11 ALMA Compact Array (ACA), and Caltech Submillimeter Observatory observations ...
Context. Cloud fragmentation into dense cores is a critical step in the process of star formation. A...
Context. The nearby Chamaeleon molecular cloud complex is a good laboratory for studying the process...
We present single-dish observations of the L1689-SMM16 core in the Ophiuchus molecular cloud in NH3 ...
International audienceContext. With the initial steps of the star formation process in the densest p...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
Context. Chamaeleon I is the most active region in terms of star formation in the Chamaeleon molecul...
Exploring the structure and dynamics of cold starless clouds is necessary to understand the differen...
Context. Core condensation is a critical step in the star-formation process, but it is still poorly ...
We observed the pre-stellar core L1521F in dust emission at 1.2 mm and in two transitions each of , ...
Context. Core condensation is a critical step in the star-formation process, but is still poorly cha...
Prestellar cores, the birthplace of Sun-like stars, form from the fragmentation of the filamentary s...
Context. Low-mass star-forming cores differ from their surrounding molecular cloud in turbulence, sh...
We present Herschel,11 ALMA Compact Array (ACA), and Caltech Submillimeter Observatory observations ...
Context. Cloud fragmentation into dense cores is a critical step in the process of star formation. A...
Context. The nearby Chamaeleon molecular cloud complex is a good laboratory for studying the process...
We present single-dish observations of the L1689-SMM16 core in the Ophiuchus molecular cloud in NH3 ...
International audienceContext. With the initial steps of the star formation process in the densest p...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
Context. Chamaeleon I is the most active region in terms of star formation in the Chamaeleon molecul...