We present evidence that low-mass starless cores, the simplest units of star formation, are systematically differentiated in their chemical composition. Some molecules, including CO and CS, almost vanish near the core centers, where the abundance decreases by at least 1 or 2 orders of magnitude with respect to the value in the outer core. At the same time, the N2H+ molecule has a constant abundance, and the fraction of NH3 increases toward the core center. Our conclusions are based on a systematic study of five mostly round starless cores ( L1498, L1495, L1400K, L1517B, and L1544), which we have mapped in (CO)-O-18 (1-0), CS (2-1), N2H+ (1-0), NH3 (1, 1) and (2, 2), and the 1.2 mm continuum [ complemented with (CO)-O-17 (1-0) and (CS)-S-34 ...
Low-mass dense cores represent the state of molecular gas associated with the earliest phases of low...
Context. The deuterium fractionation in starless cores gives us a clue to estimate their lifetime sc...
Author Institution: INAF-Osservatorio Astrofisico di ArcetriStars like our Sun form in molecular clo...
Context.Low mass starless cores present an inhomogeneous chemical composition. Species like CO and ...
Context. In the dense and cold interiors of starless molecular cloud cores, a number of chemical pro...
Context. In the dense and cold interiors of starless molecular cloud cores, a number of ch...
Dense low mass cores in nearby clouds like Taurus and Auriga are some of the simplest sites currentl...
Aims. We aim to simulate radial profiles of molecular abundances and the gas temperature in cold and...
Context. The spatial distribution of molecules around starless cores is a powerful tool for studying...
Low-mass dense cores represent the state of molecular gas associated with the earliest phases of low...
Aims. Our goals are to compare the CS, N2H+ and dust distributions in a representative sample of hig...
We use the new IRAM 30-m FTS backend to perform an unbiased ~15 GHz wide survey at 3 mm toward the ...
We describe a model for the thermal and dynamical equilibrium of starless cores that includes the ra...
We present results of an extensive mapping survey of N2H+(1-0) in about 60 low mass cloud cores alre...
Although the standard model of star formation has served us well for over 20 years, its details are ...
Low-mass dense cores represent the state of molecular gas associated with the earliest phases of low...
Context. The deuterium fractionation in starless cores gives us a clue to estimate their lifetime sc...
Author Institution: INAF-Osservatorio Astrofisico di ArcetriStars like our Sun form in molecular clo...
Context.Low mass starless cores present an inhomogeneous chemical composition. Species like CO and ...
Context. In the dense and cold interiors of starless molecular cloud cores, a number of chemical pro...
Context. In the dense and cold interiors of starless molecular cloud cores, a number of ch...
Dense low mass cores in nearby clouds like Taurus and Auriga are some of the simplest sites currentl...
Aims. We aim to simulate radial profiles of molecular abundances and the gas temperature in cold and...
Context. The spatial distribution of molecules around starless cores is a powerful tool for studying...
Low-mass dense cores represent the state of molecular gas associated with the earliest phases of low...
Aims. Our goals are to compare the CS, N2H+ and dust distributions in a representative sample of hig...
We use the new IRAM 30-m FTS backend to perform an unbiased ~15 GHz wide survey at 3 mm toward the ...
We describe a model for the thermal and dynamical equilibrium of starless cores that includes the ra...
We present results of an extensive mapping survey of N2H+(1-0) in about 60 low mass cloud cores alre...
Although the standard model of star formation has served us well for over 20 years, its details are ...
Low-mass dense cores represent the state of molecular gas associated with the earliest phases of low...
Context. The deuterium fractionation in starless cores gives us a clue to estimate their lifetime sc...
Author Institution: INAF-Osservatorio Astrofisico di ArcetriStars like our Sun form in molecular clo...