With the aim of improving predictions on far-infrared (FIR) line emission from Giant Molecular Clouds (GMCs), we study the effects of photoevaporation (PE) produced by external far-ultraviolet (FUV) and ionizing (extreme-ultraviolet) radiation on GMC structure. We consider three different GMCs with mass in the range MGMC = 103-106 M⊙. Our model includes (i) an observationally based inhomogeneous GMC density field, and (ii) its time evolution during the PE process. In the fiducial case (MGMC ≈ 105 M⊙), the PE time (tpe) increases from 1 to 30 Myr for gas metallicity Z = 0.05–1 Z⊙, respectively. Next, we compute the time-dependent luminosity of key FIR lines tracing the neutral and ionized gas layers of the GMCs, ([C ii] at 158 μm, [O iii] at...
Understanding the escape of Lyman continuum (LyC) and Lyα photons from giant molecular clouds (GMCs)...
Far-infrared (FIR) emission lines are a powerful tool to investigate the properties of the interstel...
We have used the Long Wavelength Spectrometer (LWS) aboard the Infrared Space Observatory (ISO) to m...
With the aim of improving predictions on far-infrared (FIR) line emission from Giant Molecular Cloud...
We study the effect of stellar feedback (photodissociation/ionization, radiation pressure, and winds...
International audienceContext: FUV radiation strongly affects the physical and chemical state of mol...
International audienceContext. The excitation of the filamentary gas structures surrounding giant el...
Aims. We describe the near-infrared reddening signature of giant molecular clouds (GMCs) in external...
We use detailed numerical simulations of a turbulent molecular cloud to study the usefulness of the ...
Far-infrared molecular emission is an important tool used to understand the excitation mechanisms of...
International audienceThe physical state of interstellar gas and dust is dependent on the processes ...
Far-infrared molecular emission is an important tool used to understand the excitation mechanisms of...
This thesis presents a starburst model for far-infrared/sub-millimeter/millimeter (FIR/sub-mm/mm) ...
Understanding the escape of Lyman continuum (LyC) and Lyα photons from giant molecular clouds (GMCs)...
Far-infrared (FIR) emission lines are a powerful tool to investigate the properties of the interstel...
We have used the Long Wavelength Spectrometer (LWS) aboard the Infrared Space Observatory (ISO) to m...
With the aim of improving predictions on far-infrared (FIR) line emission from Giant Molecular Cloud...
We study the effect of stellar feedback (photodissociation/ionization, radiation pressure, and winds...
International audienceContext: FUV radiation strongly affects the physical and chemical state of mol...
International audienceContext. The excitation of the filamentary gas structures surrounding giant el...
Aims. We describe the near-infrared reddening signature of giant molecular clouds (GMCs) in external...
We use detailed numerical simulations of a turbulent molecular cloud to study the usefulness of the ...
Far-infrared molecular emission is an important tool used to understand the excitation mechanisms of...
International audienceThe physical state of interstellar gas and dust is dependent on the processes ...
Far-infrared molecular emission is an important tool used to understand the excitation mechanisms of...
This thesis presents a starburst model for far-infrared/sub-millimeter/millimeter (FIR/sub-mm/mm) ...
Understanding the escape of Lyman continuum (LyC) and Lyα photons from giant molecular clouds (GMCs)...
Far-infrared (FIR) emission lines are a powerful tool to investigate the properties of the interstel...
We have used the Long Wavelength Spectrometer (LWS) aboard the Infrared Space Observatory (ISO) to m...