We study the impact of stellar feedback in shaping the density and velocity structure of neutral hydrogen (H I) in disc galaxies. For our analysis, we carry out ~4.6 pc resolution N-body+adaptive mesh refinement hydrodynamic simulations of isolated galaxies, set up to mimic a Milky Way and a Large and Small Magellanic Cloud. We quantify the density and velocity structure of the interstellar medium using power spectra and compare the simulated galaxies to observedHI in local spiral galaxies from THINGS (TheHI Nearby Galaxy Survey). Our models with stellar feedback give an excellent match to the observed THINGS HI density power spectra. We find that kinetic energy power spectra in feedback-regulated galaxies, regardless of galaxy mass and siz...
Stellar feedback plays a key role in galaxy formation by regulating star formation, driving interste...
Stellar feedback, i.e., the return of mechanical energy from supernova explosions, and massive star ...
Stellar feedback, i.e., the return of mechanical energy from supernova explosions, and massive star ...
We study the impact of stellar feedback in shaping the density and velocity structure of neutral hyd...
We study the impact of stellar feedback in shaping the density and velocity structure of neutral hyd...
Stellar feedback refers to the injection of energy, momentum and mass into the interstellar medium (...
We present an analysis of the role of feedback in shaping the neutral hydrogen (H I) content of simu...
Supersonic gas turbulence is a ubiquitous property of the interstellar medium. The level of turbulen...
We develop and implement numerical methods for including stellar feedback in galaxy-scale numerical ...
We perform calculations of isolated disc galaxies to investigate how the properties of the ISM, the ...
International audienceThe mechanisms that maintain turbulence in the interstellar medium (ISM) are s...
Galaxies' interstellar media (ISM) are observed to be supersonically turbulent, but the ultimate pow...
Stellar feedback plays a key role in galaxy formation by regulating star formation, driving interste...
Stellar feedback, i.e., the return of mechanical energy from supernova explosions, and massive star ...
Stellar feedback, i.e., the return of mechanical energy from supernova explosions, and massive star ...
We study the impact of stellar feedback in shaping the density and velocity structure of neutral hyd...
We study the impact of stellar feedback in shaping the density and velocity structure of neutral hyd...
Stellar feedback refers to the injection of energy, momentum and mass into the interstellar medium (...
We present an analysis of the role of feedback in shaping the neutral hydrogen (H I) content of simu...
Supersonic gas turbulence is a ubiquitous property of the interstellar medium. The level of turbulen...
We develop and implement numerical methods for including stellar feedback in galaxy-scale numerical ...
We perform calculations of isolated disc galaxies to investigate how the properties of the ISM, the ...
International audienceThe mechanisms that maintain turbulence in the interstellar medium (ISM) are s...
Galaxies' interstellar media (ISM) are observed to be supersonically turbulent, but the ultimate pow...
Stellar feedback plays a key role in galaxy formation by regulating star formation, driving interste...
Stellar feedback, i.e., the return of mechanical energy from supernova explosions, and massive star ...
Stellar feedback, i.e., the return of mechanical energy from supernova explosions, and massive star ...