Much of the interstellar medium in disk galaxies is in the form of neutral atomic hydrogen, H I. This gas can be in thermal equilibrium at relatively low temperatures, T less than or similar to 300 K (the cold neutral medium [CNM]), or at temperatures somewhat less than 104 K (the warm neutral medium [WNM]). These two phases can coexist over a narrow range of pressures, P(min) less than or equal to P less than or equal to P(max). We determine P(min) and P(max) in the plane of the Galaxy as a function of Galactocentric radius R using recent determinations of the gas heating rate and the gas-phase abundances of interstellar gas. We provide an analytic approximation for P(min) as a function of metallicity, far-ultraviolet radiation field, and ...
We consider the physical conditions of the neutral medium within, and in the environments of, galaxi...
An accurate treatment of the multiphase interstellar medium (ISM) in hydrodynamic galaxy simulations...
Context. A large fraction of the interstellar medium can be characterized as a multiphase medium. Th...
Much of the interstellar medium in disk galaxies is in the form of neutral atomic hydrogen, H I. Thi...
We study the thermal structure of the neutral atomic (H i) interstellar medium across a wide range o...
Dynamic and thermal processes regulate the structure of the multiphase interstellar medium (ISM), an...
Dynamic and thermal processes regulate the structure of the multiphase interstellar medium (ISM), an...
Observations have suggested substantial departures from pressure equilibrium in the interstellar med...
The Cold Neutral Medium (CNM) is an important part of the galactic gas cycle and a precondition for ...
Observations have suggested substantial departures from pressure equilibrium in the interstellar med...
International audienceContext. The neutral interstellar medium of galaxies acts as a reservoir to fu...
The neutral hydrogen 21-cm transition is a useful tracer of the neutral interstellar medium. However...
[[abstract]]Quasi-steady flows of interstellar gas in a spiral gravitational field are followed for ...
Stars in galaxies form in giant molecular clouds that coalesce when the atomic hydrogen is converted...
We consider the physical conditions of the neutral medium within, and in the environments of, galaxi...
An accurate treatment of the multiphase interstellar medium (ISM) in hydrodynamic galaxy simulations...
Context. A large fraction of the interstellar medium can be characterized as a multiphase medium. Th...
Much of the interstellar medium in disk galaxies is in the form of neutral atomic hydrogen, H I. Thi...
We study the thermal structure of the neutral atomic (H i) interstellar medium across a wide range o...
Dynamic and thermal processes regulate the structure of the multiphase interstellar medium (ISM), an...
Dynamic and thermal processes regulate the structure of the multiphase interstellar medium (ISM), an...
Observations have suggested substantial departures from pressure equilibrium in the interstellar med...
The Cold Neutral Medium (CNM) is an important part of the galactic gas cycle and a precondition for ...
Observations have suggested substantial departures from pressure equilibrium in the interstellar med...
International audienceContext. The neutral interstellar medium of galaxies acts as a reservoir to fu...
The neutral hydrogen 21-cm transition is a useful tracer of the neutral interstellar medium. However...
[[abstract]]Quasi-steady flows of interstellar gas in a spiral gravitational field are followed for ...
Stars in galaxies form in giant molecular clouds that coalesce when the atomic hydrogen is converted...
We consider the physical conditions of the neutral medium within, and in the environments of, galaxi...
An accurate treatment of the multiphase interstellar medium (ISM) in hydrodynamic galaxy simulations...
Context. A large fraction of the interstellar medium can be characterized as a multiphase medium. Th...