Context. The study of pre-stellar cores (PSCs) suffers from a lack of undepleted species to trace the physical properties of the gas in their very dense inner parts. Aims. We carry out detailed modelling of N2H+ and N2D+ cuts across the L183 main core to evaluate the depletion of these species and their usefulness as a probe of physical conditions in PSCs. Methods. We have developed a non-LTE (NLTE) Monte-Carlo code treating the 1D radiative transfer of both N2H+ and N2D+, making use of recently published collisional coefficients with He between individual hyperfine levels. The code includes line overlap between hyperfine transitions. An extensive set of core models is calculated and compared with observations. Special attention is paid to ...
Context. The study of prestellar cores is critical as they set the initial conditions in star format...
We use our Monte Carlo radiative transfer code to study non-embedded prestellar cores and cores that...
International audienceVelocity profiles of ground state lines of H2D+, HC18O+ and N2H+, observed pre...
International audienceContext. The study of pre-stellar cores (PSCs) suffers from a lack of undeplet...
Context.The study of pre-stellar cores (PSCs) suffers from a lack of undepleted species to trace th...
International audienceContext: The study of pre-stellar cores (PSCs) suffers from a lack of undeplet...
Context. The study of pre-stellar cores (PSCs) suffers from a lack of undepleted species to trace th...
p.32We continue the detailed study of L183 with the observations of N-bearing species (N2H+, N2D+, N...
Context. The study of prestellar cores is critical as they set the initial conditions in star format...
Context. The deuterium fraction in low-mass prestellar cores is a good diagnostic indicator of the i...
Context. The study of prestellar cores is critical as they set the initial conditions in star format...
Context. The deuterium fraction in low-mass prestellar cores is a good diagnostic indicator of the i...
Context. The deuterium fractionation in starless cores gives us a clue to estimate their lifetime sc...
Context. The study of prestellar cores is critical as they set the initial conditions in star format...
We use our Monte Carlo radiative transfer code to study non-embedded prestellar cores and cores that...
International audienceVelocity profiles of ground state lines of H2D+, HC18O+ and N2H+, observed pre...
International audienceContext. The study of pre-stellar cores (PSCs) suffers from a lack of undeplet...
Context.The study of pre-stellar cores (PSCs) suffers from a lack of undepleted species to trace th...
International audienceContext: The study of pre-stellar cores (PSCs) suffers from a lack of undeplet...
Context. The study of pre-stellar cores (PSCs) suffers from a lack of undepleted species to trace th...
p.32We continue the detailed study of L183 with the observations of N-bearing species (N2H+, N2D+, N...
Context. The study of prestellar cores is critical as they set the initial conditions in star format...
Context. The deuterium fraction in low-mass prestellar cores is a good diagnostic indicator of the i...
Context. The study of prestellar cores is critical as they set the initial conditions in star format...
Context. The deuterium fraction in low-mass prestellar cores is a good diagnostic indicator of the i...
Context. The deuterium fractionation in starless cores gives us a clue to estimate their lifetime sc...
Context. The study of prestellar cores is critical as they set the initial conditions in star format...
We use our Monte Carlo radiative transfer code to study non-embedded prestellar cores and cores that...
International audienceVelocity profiles of ground state lines of H2D+, HC18O+ and N2H+, observed pre...