International audienceContext. The neutral interstellar medium of galaxies acts as a reservoir to fuel star formation. The dominant heating and cooling mechanisms in this phase are uncertain in extremely metal-poor star-forming galaxies. The low dust-to-gas mass ratio and low polycyclic aromatic hydrocarbon abundance in such objects suggest that the traditional photoelectric effect heating may not be effective. Aims. Our objective is to identify the dominant thermal mechanisms in one such galaxy, I Zw 18 (1/30Z⊙), assess the diagnostic value of fine-structure cooling lines, and estimate the molecular gas content. Even though molecular gas is an important catalyst and tracer of star formation, constraints on the molecular gas mass remain elu...
I review studies of the hot gaseous medium in and around nearby normal disk galaxies, including the ...
Much of the interstellar medium in disk galaxies is in the form of neutral atomic hydrogen, H I. Thi...
The [C ii] 158 μm fine-structure line is the brightest emission line observed in local star-forming ...
International audienceContext. The neutral interstellar medium of galaxies acts as a reservoir to fu...
Context. The neutral interstellar medium of galaxies acts as a reservoir to fuel star formation. The...
International audienceThe apparent lack of cold molecular gas in blue compact dwarf (BCD) galaxies i...
International audienceAims:Photoionization models so far are unable to account for the high electron...
(Ultra) luminous infrared galaxies ((U)LIRGs) are nearby laboratories that allow us to study similar...
International audienceThe physical state of interstellar gas and dust is dependent on the processes ...
Aims.Photoionization models so far are unable to account for the high electron temperature Te([$\io...
Star formation depends critically on cooling mechanisms in the interstellar medium (ISM); however, t...
Low-metallicity star-forming dwarf galaxies are prime targets to understand the chemical enrichment ...
We study the thermal structure of the neutral atomic (H i) interstellar medium across a wide range o...
International audienceThe sensitive infrared telescopes, Spitzer and Herschel, have been used to tar...
I review studies of the hot gaseous medium in and around nearby normal disk galaxies, including the ...
Much of the interstellar medium in disk galaxies is in the form of neutral atomic hydrogen, H I. Thi...
The [C ii] 158 μm fine-structure line is the brightest emission line observed in local star-forming ...
International audienceContext. The neutral interstellar medium of galaxies acts as a reservoir to fu...
Context. The neutral interstellar medium of galaxies acts as a reservoir to fuel star formation. The...
International audienceThe apparent lack of cold molecular gas in blue compact dwarf (BCD) galaxies i...
International audienceAims:Photoionization models so far are unable to account for the high electron...
(Ultra) luminous infrared galaxies ((U)LIRGs) are nearby laboratories that allow us to study similar...
International audienceThe physical state of interstellar gas and dust is dependent on the processes ...
Aims.Photoionization models so far are unable to account for the high electron temperature Te([$\io...
Star formation depends critically on cooling mechanisms in the interstellar medium (ISM); however, t...
Low-metallicity star-forming dwarf galaxies are prime targets to understand the chemical enrichment ...
We study the thermal structure of the neutral atomic (H i) interstellar medium across a wide range o...
International audienceThe sensitive infrared telescopes, Spitzer and Herschel, have been used to tar...
I review studies of the hot gaseous medium in and around nearby normal disk galaxies, including the ...
Much of the interstellar medium in disk galaxies is in the form of neutral atomic hydrogen, H I. Thi...
The [C ii] 158 μm fine-structure line is the brightest emission line observed in local star-forming ...