We introduce a new model for the structure and evolution of the gas in galactic discs. In the model the gas is in vertical pressure and energy balance. Star formation feedback injects energy and momentum, and non-axisymmetric torques prevent the gas from becoming more than marginally gravitationally unstable. From these assumptions we derive the relationship between galaxies’ bulk properties (gas surface density, stellar content, and rotation curve) and their star formation rates, gas velocity dispersions, and rates of radial inflow. We show that the turbulence in discs can be powered primarily by star formation feedback, radial transport, or a combination of the two. In contrast to models that omit either radial transport or star formation...
Star-forming galaxies continuously form new stars out of cold interstellar gas distributed in a disc...
A simple chemical enrichment code is described where the two basic mechanisms driving the evolution ...
We present an analysis of the galaxy-scale gaseous outflows from the Feedback in Realistic Environme...
Supersonic gas turbulence is a ubiquitous property of the interstellar medium. The level of turbulen...
Supersonic gas turbulence is a ubiquitous property of the interstellar medium. The level of turbulen...
Supersonic gas turbulence is a ubiquitous property of the interstellar medium. The level of turbulen...
Gas disks of spiral galaxies can be described as clumpy accretion disks without a coupling of viscos...
We study the driving of turbulence in star-froming disc galaxies of different masses at different ep...
Star-forming galaxies continuously form new stars out of cold interstellar gas distributed in a disc...
Star-forming galaxies continuously form new stars out of cold interstellar gas distributed in a disc...
Interstellar turbulence is driven over a wide range of scales by processes including spiral arm inst...
Observations of turbulent velocity dispersions in the HI component of galactic discs show a characte...
Star-forming galaxies continuously form new stars out of cold interstellar gas distributed in a disc...
Star-forming galaxies continuously form new stars out of cold interstellar gas distributed in a disc...
Star-forming galaxies continuously form new stars out of cold interstellar gas distributed in a disc...
Star-forming galaxies continuously form new stars out of cold interstellar gas distributed in a disc...
A simple chemical enrichment code is described where the two basic mechanisms driving the evolution ...
We present an analysis of the galaxy-scale gaseous outflows from the Feedback in Realistic Environme...
Supersonic gas turbulence is a ubiquitous property of the interstellar medium. The level of turbulen...
Supersonic gas turbulence is a ubiquitous property of the interstellar medium. The level of turbulen...
Supersonic gas turbulence is a ubiquitous property of the interstellar medium. The level of turbulen...
Gas disks of spiral galaxies can be described as clumpy accretion disks without a coupling of viscos...
We study the driving of turbulence in star-froming disc galaxies of different masses at different ep...
Star-forming galaxies continuously form new stars out of cold interstellar gas distributed in a disc...
Star-forming galaxies continuously form new stars out of cold interstellar gas distributed in a disc...
Interstellar turbulence is driven over a wide range of scales by processes including spiral arm inst...
Observations of turbulent velocity dispersions in the HI component of galactic discs show a characte...
Star-forming galaxies continuously form new stars out of cold interstellar gas distributed in a disc...
Star-forming galaxies continuously form new stars out of cold interstellar gas distributed in a disc...
Star-forming galaxies continuously form new stars out of cold interstellar gas distributed in a disc...
Star-forming galaxies continuously form new stars out of cold interstellar gas distributed in a disc...
A simple chemical enrichment code is described where the two basic mechanisms driving the evolution ...
We present an analysis of the galaxy-scale gaseous outflows from the Feedback in Realistic Environme...