Using a set of high-resolution hydrodynamical simulations run with the Cholla. code, we investigate how mass and momentum couple to the multiphase components of galactic winds. The simulations model the interaction between a hot wind driven by supernova explosions and a cooler, denser cloud of interstellar or circumgalactic media. By resolving scales of Delta x 100 pc distances, our calculations capture how the cloud disruption leads to a distribution of densities and temperatures in the resulting multiphase outflow and quantify the mass and momentum associated with each phase. We find that the multiphase wind contains comparable mass and momenta in phases over a wide range of densities and temperatures extending from the hot wind (n appro...
Recent numerical simulations of the interstellar medium driven by energy input from supernovae and s...
Context. Dense stellar winds may mass-load the jets of active galactic nuclei, although it is unclea...
© 2018. The American Astronomical Society. All rights reserved. We propose a novel method to constra...
This thesis documents the hydrodynamics code Cholla and a numerical study of multiphase galactic win...
Mathematical and Physical Sciences: 1st Place (The Ohio State University Edward F. Hayes Graduate Re...
Galactic outflows produced by stellar feedback are known to be multiphase in nature. Observations an...
© 2018 The Author(s). Galactic winds exhibit a multiphase structure that consists of hot-diffuse and...
Open AccessWe study the interaction of a galactic wind with hot halo gas using hydrodynamical simula...
We study galaxy super-winds driven in major mergers, using pc-scale resolution simulations with deta...
We characterize mass, momentum, energy and metal outflow rates of multi-phase galactic winds in a su...
We characterize mass, momentum, energy, and metal outflow rates of multiphase galactic winds in a su...
We study the formation of discs via the cooling flow of gas within galactic haloes using smoothed pa...
We explore new observationally constrained subresolution models of galactic outflows and investigate...
Using hydrodynamic simulations, we study the mass-loss due to supernova-driven outflows from Milky W...
Much progress has been made recently in the acceleration of ∼104 K clouds to explain absorption line...
Recent numerical simulations of the interstellar medium driven by energy input from supernovae and s...
Context. Dense stellar winds may mass-load the jets of active galactic nuclei, although it is unclea...
© 2018. The American Astronomical Society. All rights reserved. We propose a novel method to constra...
This thesis documents the hydrodynamics code Cholla and a numerical study of multiphase galactic win...
Mathematical and Physical Sciences: 1st Place (The Ohio State University Edward F. Hayes Graduate Re...
Galactic outflows produced by stellar feedback are known to be multiphase in nature. Observations an...
© 2018 The Author(s). Galactic winds exhibit a multiphase structure that consists of hot-diffuse and...
Open AccessWe study the interaction of a galactic wind with hot halo gas using hydrodynamical simula...
We study galaxy super-winds driven in major mergers, using pc-scale resolution simulations with deta...
We characterize mass, momentum, energy and metal outflow rates of multi-phase galactic winds in a su...
We characterize mass, momentum, energy, and metal outflow rates of multiphase galactic winds in a su...
We study the formation of discs via the cooling flow of gas within galactic haloes using smoothed pa...
We explore new observationally constrained subresolution models of galactic outflows and investigate...
Using hydrodynamic simulations, we study the mass-loss due to supernova-driven outflows from Milky W...
Much progress has been made recently in the acceleration of ∼104 K clouds to explain absorption line...
Recent numerical simulations of the interstellar medium driven by energy input from supernovae and s...
Context. Dense stellar winds may mass-load the jets of active galactic nuclei, although it is unclea...
© 2018. The American Astronomical Society. All rights reserved. We propose a novel method to constra...