Context. Star formation takes place in cold dense cores in molecular clouds. Earlier observations have found that dense cores exhibit subsonic non-thermal velocity dispersions. In contrast, CO observations show that the ambient large-scale cloud is warmer and has supersonic velocity dispersions. Aims. We aim to study the ammonia (NH3) molecular line profiles with exquisite sensitivity towards the coherent cores in L1688 in order to study their kinematical properties in unprecedented detail. Methods. We used NH3 (1,1) and (2,2) data from the first data release (DR1) in the Green Bank Ammonia Survey (GAS). We first smoothed the data to a larger beam of 1′ to obtain substantially more extended maps of velocity dispersion and kinetic temperatur...
International audiencePre-stellar cores represent the initial conditions in the process of star and ...
Aims. We intend to derive statistical properties of stochastic gas motion inside the dense...
We present deep NH3 observations of the L1495-B218 filaments in the Taurus molecular cloud covering ...
Context. Star formation takes place in cold dense cores in molecular clouds. Earlier observations ha...
Context. Stars form in cold dense cores showing subsonic velocity dispersions. The parental molecula...
We present results of the observations of 17 molecular clouds associated with bright FIR sources in ...
We present results of an extensive mapping survey of N2H+(1-0) in about 60 low mass cloud cores alre...
Context. Nitrogen bearing species, such as NH3, N2H+, and their deuterated isotopologues show enhanc...
In this paper we examine the velocity structure of dense starless cores within the L1495-B218 struct...
Aims. The aim of this study is to investigate the structure and kinematics of the nearby candidate f...
Context. In our previous work we found a statistically significant offset ΔV ≈ 27 m s-1 between the...
We use Green Bank Ammonia Survey observations of NH3 (1, 1) and (2, 2) emission with 32″ FWHM resolu...
Pre-stellar cores represent the initial conditions in the process of star and planet formation, ther...
We report systematic mapping observations of the NH3 (1, 1) and (2, 2) inversion lines toward 62 hig...
International audiencePre-stellar cores represent the initial conditions in the process of star and ...
Aims. We intend to derive statistical properties of stochastic gas motion inside the dense...
We present deep NH3 observations of the L1495-B218 filaments in the Taurus molecular cloud covering ...
Context. Star formation takes place in cold dense cores in molecular clouds. Earlier observations ha...
Context. Stars form in cold dense cores showing subsonic velocity dispersions. The parental molecula...
We present results of the observations of 17 molecular clouds associated with bright FIR sources in ...
We present results of an extensive mapping survey of N2H+(1-0) in about 60 low mass cloud cores alre...
Context. Nitrogen bearing species, such as NH3, N2H+, and their deuterated isotopologues show enhanc...
In this paper we examine the velocity structure of dense starless cores within the L1495-B218 struct...
Aims. The aim of this study is to investigate the structure and kinematics of the nearby candidate f...
Context. In our previous work we found a statistically significant offset ΔV ≈ 27 m s-1 between the...
We use Green Bank Ammonia Survey observations of NH3 (1, 1) and (2, 2) emission with 32″ FWHM resolu...
Pre-stellar cores represent the initial conditions in the process of star and planet formation, ther...
We report systematic mapping observations of the NH3 (1, 1) and (2, 2) inversion lines toward 62 hig...
International audiencePre-stellar cores represent the initial conditions in the process of star and ...
Aims. We intend to derive statistical properties of stochastic gas motion inside the dense...
We present deep NH3 observations of the L1495-B218 filaments in the Taurus molecular cloud covering ...