A roughly constant temperature over a wide range of densities is maintained in molecular clouds through radiative heating and cooling. An isothermal equation of state is therefore frequently employed in molecular cloud simulations. However, the dynamical processes in molecular clouds include shock waves, expansion waves, cooling induced collapse and baroclinic vorticity, all incompatible with the assumption of a purely isothermal flow. Here, we incorporate an energy equation including all the important heating and cooling rates and a simple chemical network into simulations of 3D, hydrodynamic, decaying turbulence. This allows us to test the accuracy of the isothermal assumption by directly comparing a model run with the modified energy equ...
International audienceThe interstellar medium (ISM) is typically a hostile environment: cold, dilute...
Contemporary galactic star formation occurs predominantly within gravitationally unstable, cold, den...
We present a numerical and analytical study of the thermal fragmentation of a turbulent flow of inte...
We present the results from three dimensional hydrodynamical simulations of decaying high-speed turb...
We present the results from three-dimensional hydrodynamical simulations of decaying high-speed turb...
Here we present results from simulations of turbulence in starforming environments obtained by coupl...
We compute 3D models of supersonic, sub-Alfvénic, and super-Alfvénic decaying turbulence, with an is...
International audienceContext. It is well established that the atomic interstellar hydrogen is filli...
We study the linear evolution of small perturbations of self-gravitating, ideal fluid systems, both ...
In order to understand the origin of observed molecular cloud (MC) properties, it is critical to und...
In order to understand the origin of observed molecular cloud properties, it is critical to understa...
Abstract. The analysis of the thermal and chemical equilibrium states of the inter-stellar medium sh...
Using three-dimensional magnetohydrodynamic simulations including the effects of radiative cool-ing/...
Context. Supersonic disordered flows accompany the formation and evolution of molecular clouds (MCs)...
Context. It is well established that the atomic interstellar hydrogen is filling the galaxies and co...
International audienceThe interstellar medium (ISM) is typically a hostile environment: cold, dilute...
Contemporary galactic star formation occurs predominantly within gravitationally unstable, cold, den...
We present a numerical and analytical study of the thermal fragmentation of a turbulent flow of inte...
We present the results from three dimensional hydrodynamical simulations of decaying high-speed turb...
We present the results from three-dimensional hydrodynamical simulations of decaying high-speed turb...
Here we present results from simulations of turbulence in starforming environments obtained by coupl...
We compute 3D models of supersonic, sub-Alfvénic, and super-Alfvénic decaying turbulence, with an is...
International audienceContext. It is well established that the atomic interstellar hydrogen is filli...
We study the linear evolution of small perturbations of self-gravitating, ideal fluid systems, both ...
In order to understand the origin of observed molecular cloud (MC) properties, it is critical to und...
In order to understand the origin of observed molecular cloud properties, it is critical to understa...
Abstract. The analysis of the thermal and chemical equilibrium states of the inter-stellar medium sh...
Using three-dimensional magnetohydrodynamic simulations including the effects of radiative cool-ing/...
Context. Supersonic disordered flows accompany the formation and evolution of molecular clouds (MCs)...
Context. It is well established that the atomic interstellar hydrogen is filling the galaxies and co...
International audienceThe interstellar medium (ISM) is typically a hostile environment: cold, dilute...
Contemporary galactic star formation occurs predominantly within gravitationally unstable, cold, den...
We present a numerical and analytical study of the thermal fragmentation of a turbulent flow of inte...