International audienceWe investigate the uncertainties affecting the temperature profiles of dense cores of interstellar clouds. In regions shielded from external ultraviolet radiation, the problem is reduced to the balance between cosmic ray heating, line cooling, and the coupling between gas and dust. We show that variations in the gas phase abundances, the grain size distribution, and the velocity field can each change the predicted core temperatures by 1 or 2 K. We emphasize the role of non-local radiative transfer effects that often are not taken into account, for example, when modeling the core chemistry. These include the radiative coupling between regions of different temperature and the enhanced line cooling near the cloud surface....
We present a detailed model for the thermal balance, chemistry, and radiative transfer within quiesc...
The central molecular zone at the center of our Galaxy is the best template to study star ...
International audienceContext. The temperature is a central parameter affecting the chemical and phy...
International audienceWe investigate the uncertainties affecting the temperature profiles of dense c...
International audienceContext. The mass of prestellar cores is an essential ingredient to understand...
We have considered the thermal equilibrium in pre-protostellar cores in the approximation where the ...
We use our Monte Carlo radiative transfer code to study non-embedded prestellar cores and cores that...
Aims. We aim to simulate radial profiles of molecular abundances and the gas temperature in cold and...
Molecular line observations of starless (prestellar) cores combined with a chemical evolution modeli...
We used the Atacama Pathfinder Experiment (APEX) 12 m telescope to observe the J(KAKc) = 3(03) -> 2(...
We use our Monte Carlo radiative transfer code to study non-embedded prestellar cores and cores that...
We will present radiative transfer calculations of non-embedded and embedded prestellar cores perfor...
We used the Atacama Pathfinder Experiment (APEX) 12 m telescope to observe the JKAKc = ...
We implement a Monte Carlo radiative transfer method, that uses a large number of monochromatic lumi...
This is a progress report on our numerical simulations of conditions in the cold cores of cooling fl...
We present a detailed model for the thermal balance, chemistry, and radiative transfer within quiesc...
The central molecular zone at the center of our Galaxy is the best template to study star ...
International audienceContext. The temperature is a central parameter affecting the chemical and phy...
International audienceWe investigate the uncertainties affecting the temperature profiles of dense c...
International audienceContext. The mass of prestellar cores is an essential ingredient to understand...
We have considered the thermal equilibrium in pre-protostellar cores in the approximation where the ...
We use our Monte Carlo radiative transfer code to study non-embedded prestellar cores and cores that...
Aims. We aim to simulate radial profiles of molecular abundances and the gas temperature in cold and...
Molecular line observations of starless (prestellar) cores combined with a chemical evolution modeli...
We used the Atacama Pathfinder Experiment (APEX) 12 m telescope to observe the J(KAKc) = 3(03) -> 2(...
We use our Monte Carlo radiative transfer code to study non-embedded prestellar cores and cores that...
We will present radiative transfer calculations of non-embedded and embedded prestellar cores perfor...
We used the Atacama Pathfinder Experiment (APEX) 12 m telescope to observe the JKAKc = ...
We implement a Monte Carlo radiative transfer method, that uses a large number of monochromatic lumi...
This is a progress report on our numerical simulations of conditions in the cold cores of cooling fl...
We present a detailed model for the thermal balance, chemistry, and radiative transfer within quiesc...
The central molecular zone at the center of our Galaxy is the best template to study star ...
International audienceContext. The temperature is a central parameter affecting the chemical and phy...